Abteilung Klimaphysik
Unsere Forschung ist darauf fokussiert, zu verstehen wie das Klimasystem vom atmosphärischen Wassergehalt abhängt. Wir bemühen uns Fragen der Art zu beantworten wie Wolkenprozesse die planetare Albedo bestimmen, wie Feuchtigkeit die Struktur der Troposphäre beeinflusst, und wie ‘wasser-getriebene’ Zirkulationssysteme mit Erdoberfläche und Stratosphäre wechselwirken. Während der letzten Jahre haben diese Bemühungen zu neuen Entwicklungen sowohl in unserer Modellierung als auch in unseren Beobachtungskapazitäten geführt – Entwicklungen, die nicht nur für uns und unsere speziellen wissenschaftlichen Fragestellungen, sondern für das gesamte Forschungsfeld neue Perspektiven eröffnen.
Wir halten die Entwicklungen in der Modellierung für einen entscheidende Transformation. Es ist nun möglich für sehr große Gebiete, oder sogar global, Simulationen mit horizontalen Auflösungen auf der Kilometerskala (’sturm-auflösend’) durchzuführen, was für die Kopplung von Feuchteprozessen und Zirkulation von wesentlicher Bedeutung ist. Unsere globale gekoppelte 5-Kilometer Simulation über ein Jahr ist die erste ihrer Art, ebenso wie die globalen atmosphärischen Simulationen im von uns geleiteten DYAMOND-Projekt. Diese technischen Möglichkeiten erlauben uns nun Feuchteprozess und ihre Interaktion mit der globalen Zirkulation und dem Klimasystem ganzheitlich zu studieren; sie reduzieren den Einflussbereich von schlecht bestimmbaren Modellannahmen (notwendig bleiben nur noch Parametrisierungen von Mikrophysik und Turbulenz); und beruhen auf der Nutzung beobachtbarer Größen, was eine natürliche Verbindung zu Messungen schafft. In Bezug auf die Fragen, die uns interessieren, führen diese Eigenschaften zu klarer formulierbaren Problemstellungen und besseren Kooperationsmöglichkeiten mit anderen Forscher*innen. Begleitet wurde dieser wesentliche Fortschritt in der Modellierung von der Entwicklung neuer Beobachtungsmethoden, genutzt insbesondere in der EUREC4A-Messkampagne, und der inzwischen sehr ausgereiften Wolkenbeobachtungsstation “Barbados Cloud Observatory”. Diese Entwicklungen ermöglichen uns zu beobachten wie Wasser, in der Form von Wolken oder durch andere Feuchteprozesse, und Zirkulation interagieren.
Beobachtungen
FESSTVaL
FESSTVaL: ein Festival von fast 300 Instrumenten, die zusammenkommen, um einen Blick auf die Entstehung von Gewittern in den mittleren Breiten zu werfen.
Voll entwickelte Gewitter erscheinen als beeindruckende Wetterphänomene: Gewittercluster können sich in der Horizontalen über Hunderte von Kilometern erstrecken und in der Vertikalen bis zur Tropopause, etwa 10 km hoch, reichen. ...
EUREC4A
Im Januar und Februar 2020 fand auf und um die Karibikinsel Barbados unter Federführung des Max-Planck-Instituts für Meteorologie in Hamburg und dem CNRS der Sorbonne Universität zu Paris eine internationale Messkampagne in der Passatregion statt. Sie hatte das Ziel zu verstehen, wie die Passatbewölkung auf die Klimaerwärmung reagiert und eventuell zu ihr beiträgt.
Seminare in der Abteilung Klimaphysik
Sofern nicht anders vermerkt findet das Seminar immer montags um 9.00 Uhr im Raum 22/23 statt. Für Änderungen der Vortragstermine, des Chairs oder auch für Vortragsvorschläge bitten wir um eine E-Mail an Henning Franke (henning.franke@) oder Theresa Mieslinger ( mpimet.mpg.detheresa.mieslinger@). mpimet.mpg.de
Ziel des AES Seminars ist es, einen Einblick zu geben, woran man gerade arbeitet. Es handelt sich um eine Veranstaltung der Abteilung „Atmosphäre im Erdsystem“, in der man Gelegenheit hat, neue Ideen mit Kolleginnen und Kollegen zu teilen und zu diskutieren. Weitere Informationen zum AES Seminar finden sich hier.
Abteilungsmitglieder und Publikationen
- Achatz, U., Alexander, M., Becker, E., Chun, H.-Y., Dörnbrack, A., Holt, L., Plougonven, R., Polichtchouk, I., Sato, K., Sheshadri, A., Stephan, C., van Niekerk, A. & Wright, C. (2024). Atmospheric gravity waves: processes and parameterization. Journal of the Atmospheric Sciences, 81, 237-262. doi:10.1175/JAS-D-23-0210.1 [publisher-version]
- Andreasen, L., Cornér, J., Abbott, P., Sinclair, V., Riede, F. & Timmreck, C. (2024). Changes in Northern Hemisphere extra-tropical cyclone frequency following volcanic eruptions. Environmental research: climate, 3: 025002. doi:10.1088/2752-5295/ad2c0e [publisher-version]
- Bao, J., Stevens, B., Kluft, L. & Muller, C. (2024). Intensification of tropical precipitation extremes from more organized convection. Science Advances, 10: eadj6801. doi:10.1126/sciadv.adj6801 [supplementary-material][publisher-version]
- Barros, A., Becker, T., Cardenas, M., Davidson, E., Gruber, N., Hofmann, E., Hudson, M., llangasekare, T., Kang, S., Montanari, A., Moreno, M., Nimmo, F., Paxton, L., Primeau, F., Salters, V., Schimel, D., Stevens, B., Su, H., Tierney, J., Trumbore, S., Wuebbles, D., Zeitler, P., Zhang, B. & Zhang, X. (2024). Thank You to Our 2023 Peer Reviewers. AGU Advances, 5: e2024AV001290. doi:10.1029/2024AV001290 [publisher-version]
- Bastin, S., Koldunov, A., Schütte, F., Gutjahr, O., Mrozowska, M., Fischer, T., Shevchenko, R., Kumar, A., Koldunov, N., Haak, H., Brüggemann, N., Hummels, R., Specht, M., Jungclaus, J., Danilov, S., Dengler, M. & Jochum, M. (2024). Sensitivity of the tropical Atlantic to vertical mixing in two ocean models (ICON-O v2.6.6 and FESOM v2.5) (open for discussions). doi:10.5194/egusphere-2024-2281 [Preprint] [pre-print]
- Bauer, P., Hoefler, T., Stevens, B. & Hazeleger, W. (2024). Digital twins of Earth and the computing challenge of human interaction. Nature Computational Science, 4, 154-157. doi:10.1038/s43588-024-00599-3
- Bonnet, P., Pastori, L., Schwabe, M., Giorgetta, M. & Iglesias-Suarez, F. (2024). Tuning a climate model with machine-learning based emulators and history matching (under open review). doi:10.5194/egusphere-2024-2508 [Preprint] [pre-print]
- Brodowsky, C., Sukhodolov, T., Chiodo, G., Aquila, V., Bekki, S., Dhomse, S., Höpfner, M., Laakso, A., Mann, G., Niemeier, U., Pitari, G., Quaglia, I., Rozanov, E., Schmidt, A., Sekiya, T., Tilmes, S., Timmreck, C., Vattioni, S., Visioni, D., Yu, P., Zhu, Y. & Peter, T. (2024). Analysis of the global atmospheric background sulfur budget in a multi-model framework. Atmospheric Chemistry and Physics Discussions, 24, 5513-5548. doi:10.5194/acp-24-5513-2024 [publisher-version]
- Byrne, M., Hegerl, G., Scheff, J., Adam, O., Berg, A., Biasutti, M., Bordoni, S., Dai, A., Geen, R., Henry, M., Hill, S., Hohenegger, C., Humphrey, V., Joshi, M., Konings, A., Laguë, M., Lambert, F., Lehner, F., Mankin, J., McColl, K., McKinnon, K., Pendergrass, A., Pietschnig, M., Schmidt, L., Schurer, A., Scott, E., Sexton, D., Sherwood, S., Vargas Zeppetello, L. & Zhang, Y. (2024). Theory and the future of land-climate science. Nature Geoscience. doi:10.1038/s41561-024-01553-8
- Dorff, H., Konow, H., Schemann, V. & Ament, F. (2024). Observability of moisture transport divergence in Arctic atmospheric rivers by dropsondes. Atmospheric Chemistry and Physics, 24, 8771-8795. doi:10.5194/acp-24-8771-2024 [publisher-version]
- Fons, E., Naumann, A., Neubauer, D., Lang, T. & Lohmann, U. (2024). Investigating the sign of stratocumulus adjustments to aerosols in the ICON global storm-resolving model. Atmospheric Chemistry and Physics, 24, 8653-8675. doi:10.5194/acp-24-8653-2024 [publisher-version]
- Franke, H. (2024). The quasi-biennial oscillation in a warming climate. Phd Thesis, Berichte zur Erdsystemforschung, 278. [publisher-version]
- Franke, H. & Giorgetta, M. (2024). Toward the direct simulation of the quasi-biennial oscillation in a global storm-resolving model. Journal of Advances in Modeling Earth Systems, 16: e2024MS004381. doi:10.1029/2024MS004381 [publisher-version][supplementary-material]
- Günther, M., Schmidt, H., Timmreck, C. & Toohey, M. (2024). Why does stratospheric aerosol forcing strongly cool the warm pool?. Atmospheric Chemistry and Physics Discussions, 24, 7203-7225. doi:10.5194/acp-24-7203-2024 [publisher-version]
- Hazeleger, W., Aerts, J., Bauer, P., Bierkens, M., Camps-Valls, G., Dekker, M., Doblas-Reyes, F., Eyring, V., Finkenauer, C., Grundner, A., Hachinger, S., Hall, D., Hartmann, T., Iglesias-Suarez, F., Janssens, M., Jones, E., Kölling, T., Lees, M., Lhermitte, S., van Nieuwpoort, R., Pahker, A.-K., Pellicer-Valero, O., Pijpers, F., Siibak, A., Spitzer, J., Stevens, B., Vasconcelos, V. & Vossepoel, F. (2024). Digital twins of the Earth with and for humans. Communications Earth & Environment, 5: 463. doi:10.1038/s43247-024-01626-x [publisher-version][any-fulltext]
- Hegde, R., Günther, M., Schmidt, H. & Kroll, C. (2024). Surface temperature dependence of stratospheric sulfate aerosol clear-sky forcing and feedback (under open discussion). EGUsphere, . doi:10.5194/egusphere-2024-2221 [Preprint] [pre-print][research-data]
- Heuer, H., Schwabe, M., Gentine, P., Giorgetta, M. & Eyring, V. (2024). Interpretable multiscale machine learning-based parameterizations of convection for ICON. Journal of Advances in Modeling Earth Systems, 16: e2024MS004398. doi:10.1029/2024MS004398 [publisher-version]
- Janssens, M., George, G., Schulz, H., Couvreux, F. & Bouniol, D. (2024). Shallow convective heating in weak temperature gradient balance explains mesoscale vertical motions in the trades. Journal of Geophysical Research: Atmospheres, 129: e2024JD041417. doi:10.1029/2024JD041417 [publisher-version][supplementary-material]
- Kroll, C., Fueglistaler, S., Schmidt, H., Dauhut, T. & Timmreck, C. (2024). The impact of stratospheric aerosol heating on the frozen hydrometeor transport pathways in the tropical tropopause layer. Environmental Research Letters, 19: 044039. doi:10.1088/1748-9326/ad33d0 [supplementary-material][publisher-version]
- Kroll, C. & Schmidt, A. (2024). Indirect stratospheric moisture increase after a Pinatubo-magnitude eruption can be comparable to direct increase after 2022 Hunga. Communications Earth & Environment, 5: 497. doi:10.1038/s43247-024-01651-w [publisher-version][any-fulltext]
- Laakso, A., Visioni, D., Niemeier, U., Tilmes, S. & Kokkola, H. (2024). Dependency of the impacts of geoengineering on the stratospheric sulfur injection strategy – Part 2: How changes in the hydrological cycle depend on the injection rate and model used. Earth System Dynamics Discussions, 15, 405-427. doi:10.5194/esd-15-405-2024 [publisher-version]
- Lee, J. & Hohenegger, Cathy (Climate Surface Interaction, Department Climate Physics, MPI for Meteorology, Max Planck Society), . (2024). Weaker land–atmosphere coupling in global storm-resolving simulation. PNAS, 121: 2314265121. doi:10.1073/pnas.2314265121 [publisher-version]
- Meuer, J., Timmreck, C., Fang, S.-W. & Kadow, C. (2024). Fingerprints of past volcanic eruptions can be detected in historical climate records using machine learning. Communications Earth & Environment, 5: 455. doi:10.1038/s43247-024-01617-y [publisher-version][supplementary-material]
- Morfa Avalos, Y. (2024). The role of inertia-gravity waves in the atmospheric energy spectrum: insights from global storm-resolving simulations. Phd Thesis, Berichte zur Erdsystemforschung, 276. doi:10.17617/2.3565958 [publisher-version]
- Morr, A., Riechers, K., Gorjão, L. & Boers, N. (2024). Anticipating critical transitions in multidimensional systems driven by time- and state-dependent noise. Physical Review Research, 6: 033251. doi:10.1103/PhysRevResearch.6.033251 [publisher-version]
- Naumann, A., Esch, M. & Stevens, B. (2024). How the representation of microphysical processes affects tropical condensate in a global storm-resolving model (open for discussion). Atmospheric Chemistry and Physics. doi:10.5194/egusphere-2024-2268 [Preprint] [pre-print]
- Nuijens, L., Wenegrat, J., Lopez Dekker, P., Pasquero, C., O'Neill, L., Ardhuin, F., Ayet, A., Bechtold, P., Bruch, W., Laurindo, L., Chen, X., Desbiolles, F., Foster, R., Frenger, I., George, G., Giese, R., Hayden, E., Hell, M., Iyer, S., Kousal, J., Laxague, N., Lenain, L., Pacheco, M., Meroni, A., Minobe, S., Muller, C., O'Driscoll, O., Oerder, V., Pizzo, N., Putrasahan, D., Redelsperger, J.-L., Renault, L., Rommen, B., Sauvage, C., Schneider, N., Shao, M., Siebesma, P., Small, J., Stevens, B., Stoffelen, A., Strobach, E., Sullivan, P., Thompson, E., Thompson, L., Uchoa, I., Vandemark, D., Villas Boas, B., Yang, B., Zhang, D. & Zippel, S. (2024). The Air-Sea Interaction (ASI) submesoscale: physics and impact. [publisher-version]
- Prange, M., Stevens, B. & Buehler, S. (2024). Seasonal emergence and circulation coupling of moist layers over the tropical Atlantic. Geophysical Research Letters, 51(15): e2024GL108865. [publisher-version][supplementary-material]
- Respati, M., Dommenget, D., Segura, H. & Stassen, C. (2024). Diagnosing drivers of tropical precipitation biases in coupled climate model simulations. Climate Dynamics. doi:10.1007/s00382-024-07355-3 [publisher-version][supplementary-material]
- Römer, F., Buehler, S., Kluft, L. & Pincus, R. (2024). Effect of uncertainty in water vapor continuum absorption on CO2 forcing, longwave feedback, and climate sensitivity. Journal of Advances in Modeling Earth Systems, 16: e2023MS004157. doi:10.1029/2023MS004157 [publisher-version]
- Schäfer, M., Wolf, K., Ehrlich, A., Jäkel, E., Luebke, A., Müller, J., Thoböll, J., Stevens, B. & Wendisch, M. (2024). Introduction to the new airborne thermal infrared imager VELOX for remote sensing of cloud and surface properties. AIP Conference Proceedings, 2988(Radiation Processes in the Atmosphere and Ocean): 050001. doi:10.1063/5.0183450 [publisher-version]
- Schmidt, H., Rast, S., Bao, J., Fang, S.-W., Jiménez de la Cuesta Otero, D., Keil, P., Kluft, L., Kroll, C., Lang, T., Niemeier, U., Schneidereit , A., Williams , A. & Stevens, B. (2024). Effects of vertical grid spacing on the climate simulated in the ICON-Sapphire global storm-resolving model. Geoscientific Model Development, 17, 1563-1584. doi:10.5194/egusphere-2023-1575 [supplementary-material][publisher-version]
- Schmidt, L. & Hohenegger, C. (2024). Precipitation enhancement over tropical land through the lens of the moisture-precipitation relationship. Quarterly Journal of the Royal Meteorological Society. doi:10.1002/qj.4838 [publisher-version]
- Schmidt, L. (2024). On the partitioning of tropical precipitation between land and ocean. Phd Thesis, Berichte zur Erdsystemforschung, 282. [publisher-version]
- Schnitt, S., Foth, A., Kalesse-Los, H., Mech, M., Acquistapace, C., Jansen, F., Löhnert, U., Pospichal, B., Röttenbacher, J., Crewell, S. & Stevens, B. (2024). Ground- and ship-based microwave radiometer measurements during EUREC4A. Earth System Science Data, 16, 681-700. doi:10.5194/essd-16-681-2024 [publisher-version]
- Segura, H. & Hohenegger, C. (2024). How do the tropics precipitate? Daily variations in precipitation and cloud distribution. Journal of the Meteorological Society of Japan, 102, 525-537. doi:10.2151/jmsj.2024-028 [publisher-version]
- Stevens, B. (2024). A perspective on the future of CMIP. AGU Advances, 5: e2023AV001086. doi:10.1029/2023AV001086 [publisher-version]
- Stevens, B., Adami, S., Ali, T., Anzt, H., Aslan, Z., Attinger, S., Bäck, J., Baehr, J., Bauer, P., Bernier, N., Bishop, B., Bockelmann, H., Bony, S., Bouchet, V., Brasseur, G., Bresch, D., Breyer, S., Brunet, G., Buttigieg, P., Cao, J., Castet, C., Cheng, Y., Dey Choudhury, A., Coen, D., Crewell, S., Dabholkar, A., Dai, Q., Doblas-Reyes, F., Durran, D., El Gaidi, A., Ewen, C., Exarchou, E., Eyring, V., Falkinhoff, F., Farrell, D., Forster, P., Frassoni, A., Frauen, C., Fuhrer, O., Gani, S., Gerber, E., Goldfarb, D., Grieger, J., Gruber, N., Hazeleger, W., Herken, R., Hewitt, C., Hoefler, T., Hsu, H.-H., Jacob, D., Jahn, A., Jakob, C., Jung, T., Kadow, C., Kang, I.-S., Kang, S., Kashinath, K., Kleinen-von Königslöw, K., Klocke, D., Kloenne, U., Klöwer, M., Kodama, C., Kollet, S., Kölling, T., Kontkanen, J., Kopp, S., Koran, M., Kulmala, M., Lappalainen, H., Latifi, F., Lawrence, B., Lee, J., Lejeun, Q., Lessig, C., Li, C., Lippert, T., Luterbacher, J., Manninen, P., Marotzke, J., Matsouoka, S., Merchant, C., Messmer, P., Michel, G., Michielsen, K., Miyakawa, T., Müller, J., Munir, R., Narayanasetti, S., Ndiaye, O., Nobre, C., Oberg, A., Oki, R., Özkan-Haller, T., Palmer, T., Posey, S., Prein, A., Primus, O., Pritchard, M., Pullen, J., Putrasahan, D., Quaas, J., Raghavan, K., Ramaswamy, V., Rapp, M., Rauser, F., Reichstein, M., Revi, A., Saluja, S., Satoh, M., Schemann, V., Schemm, S., Schnadt Poberaj, C., Schulthess, T., Senior, C., Shukla, J., Singh, M., Slingo, J., Sobel, A., Solman, S., Spitzer, J., Stier, P., Stocker, T., Strock, S., Su, H., Taalas, P., Taylor, J., Tegtmeier, S., Teutsch, G., Tompkins, A., Ulbrich, U., Vidale, P.-L., Wu, C.-M., Xu, H., Zaki, N., Zanna, L., Zhou, T. & Ziemen, F. (in press). Earth Virtualization Engines (EVE). Earth System Science Data, 16, 2113-2122. doi:10.5194/essd-16-2113-2024 [publisher-version]
- Stubenrauch, C., Kinne, S., Mandorli, G., Rossow, W., Winker, D., Ackerman, S., Chepfer, H., Di Girolamo, L., Garnier, A., Heidinger, A., Karlsson, K.-G., Meyer, K., Minnis, P., Platnick, S., Stengel, M., Sun-Mack, S., Veglio, P., Walther, A., Cai, X., Young, A. & Zhao, G. (2024). Lessons learned from the updated GEWEX cloud assessment database. Surveys in Geophysics: early access. doi:10.1007/s10712-024-09824-0 [publisher-version]
- Timmreck, C., D'Agostino, R., Fang, S.-W., Ballinger, A., Hegerl, G., Kang, S. & Olonscheck, D. (2024). Relative role of land and ocean in shaping tropical hydroclimate after large volcanic eruptions. . EGU General Assembly 2024. Wien. 2024-04-14 - 2024-04-19 doi:10.5194/egusphere-egu24-6543 [abstract]
- Timmreck, C., Olonscheck, D., Ballinger, A., D’Agostino, R., Fang, S.-W., Schurer, A. & Hegerl, G. (2024). Linearity of the climate response to increasingly strong tropical volcanic eruptions in a large ensemble framework. Journal of Climate, 37, 2455-2470. doi:10.1175/JCLI-D-23-0408.1 [supplementary-material]
- van Dijk, E., Jungclaus, J., Sigl, M., Timmreck, C. & Krüger, K. (2024). High-frequency climate forcing causes prolonged cold periods in the Holocene. Communications Earth & Environment, 5: 242. doi:10.1038/s43247-024-01380-0 [publisher-version]
- Vernier, J.-P., Aubry, T., Timmreck, C., Schmidt, A., Clarisse, L., Prata, F., Theys, N., Prata, A., Mann, G., Choi, H., Carn, S., Rigby, R., Loughlin, S. & Stevenson, J. (2024). The 2019 Raikoke eruption as a testbed used by the Volcano Response group for rapid assessment of volcanic atmospheric impacts. Atmospheric Chemistry and Physics, 24, 5765-5782. doi:10.5194/egusphere-2023-1116 [publisher-version]
- Visioni, D., Robock, A., Haywood, J., Henry, M., Tilmes, S., MacMartin, D., Kravitz, B., Doherty, S., Moore, J., Lennard, C., Watanabe, S., Muri, H., Niemeier, U., Boucher, O., Syed, A., Egbebiyi, T., Seferian, R. & Quaglia, I. (2024). G6-1.5K-SAI: a new Geoengineering Model Intercomparison Project (GeoMIP) experiment integrating recent advances in solar radiation modification studies. Geoscientific Model Development, 17, 2583-2596. doi:10.5194/gmd-17-2583-2024 [publisher-version]
- Weber, A., Kölling, T., Pörtge, V., Baumgartner, A., Rammeloo, C., Zinner, T. & Mayer, B. (2024). Polarization upgrade of specMACS: calibration and characterization of the 2D RGB polarization-resolving cameras. Atmospheric Measurement Techniques, 17, 1419-1439. doi:10.5194/amt-17-1419-2024 [publisher-version]
- Wijngaard, R., Oh, H., Khanal, S., Yoon, A., van de Berg, W. & An, S.-I. (2024). The associations of Tibetan Plateau spring snow cover with East Asian summer monsoon rainfall before and after 1990. Frontiers in Earth Science, 12: 1385657. doi:10.3389/feart.2024.1385657 [publisher-version][supplementary-material]
- Willson, J., Reed, K., Jablonowski, C., Kent, J., Lauritzen, P., Nair, R., Taylor, M., Ullrich, P., Zarzycki, C., Hall, D., Dazlich, D., Heikes, R., Konor, C., Randall, D., Dubos, T., Meurdesoif, Y., Chen, X., Harris, L., Kühnlein, C., Lee, V., Qaddouri, A., Girard, C., Giorgetta, M., Reinert, D., Miura, H., Ohno, T. & Yoshida, R. (2024). DCMIP2016: The tropical cyclone test case. Geoscientific Model Development, 17, 2493 – 2507. doi:10.5194/gmd-17-2493-2024 [publisher-version]
- Windmiller, J. (2024). The calm and variable inner life of the Atlantic Intertropical Convergence Zone: the relationship between the doldrums and surface convergence. Geophysical Research Letters, 51: e2024GL109460. doi:10.1029/2024GL109460 [publisher-version]
- Windmiller, J. & Stevens, B. (2024). The inner life of the Atlantic Intertropical Convergence Zone. Quarterly Journal of the Royal Meteorological Society: early view. doi:10.1002/qj.4610
- Yoon, A., Kim, J., Lee, J., Min Sung, H., Hong, J.-W., Min, S.-K., Lee, J. & Hong, J. (2024). Factor analysis of recent major heatwaves in East Asia. Geoscience Frontiers, 15: 101730. doi:10.1016/j.gsf.2023.101730 [publisher-version]
- Albright, A., Stevens, B., Bony, S. & Vogel, R. (2023). A new conceptual picture of the trade wind transition layer. Journal of the Atmospheric Sciences, 80, 1547-1563. doi:10.1175/JAS-D-22-0184.1 [publisher-version]
- Aminzadeh, M., Or, D., Stevens, B., AghaKouchak, A. & Shokri, N. (2023). Upper bounds of maximum land surface temperatures in a warming climate and limits to plant growth. Earth's Future, 11: e2023EF003755. doi:10.1029/2023EF003755 [publisher-version]
- Bailey, A., Aemisegger, F., Villiger, L., Los, S., Reverdin, G., Meléndez, E., Acquistapace, C., Baranowski, D., Böck, T., Bony, S., Bordsdorff, T., Coffman, D., de Szoeke, S., Diekmann, C., Dütsch, M., Ertl, B., Galewsky, J., Henze, D., Makuch, P., Noone, D., Quinn, P., Rösch, M., Schneider, A., Schneider, M., Speich, S., Stevens, B. & Thompson, E. (2023). Isotopic measurements in water vapor, precipitation, and seawater during EUREC4A. Earth System Science Data, 15, 465-495. doi:10.5194/essd-15-465-2023 [publisher-version][supplementary-material]
- Bauer, P., Dueben, P., Chantry, M., Doblas-Reyes, F., Hoefler, T., McGovern, A. & Stevens, B. (2023). Deep learning and a changing economy in weather and climate prediction. Nature Reviews Earth & Environment, 4, 507-509. doi:10.1038/s43017-023-00468-z
- Blanco, J., Caballero, R., Datseris, G., Stevens, B., Bony, S., Hadas, O. & Kaspi, Y. (2023). A cloud-controlling factor perspective on the hemispheric asymmetry of extratropical cloud albedo. Journal of Climate, 36, 1793-1804 . doi:10.1175/JCLI-D-22-0410.1 [publisher-version]
- Bruckert, J., Hoshyaripour, G., Hirsch, L., Horvath, A., Kahn, R., Kölling, T., Muser, L., Timmreck, C., Vogel, H., Wallis, S. & Vogel, B. (2023). Dispersion and aging of volcanic aerosols after the La Soufriere eruption in April 2021. Journal of Geophysical Research: Atmospheres, 128: e2022JD037694. doi:10.1029/2022JD037694 [publisher-version]
- Chen, Y., Ji, D., Zhang, Q., Moore, J., Boucher, O., Jones, A., Lurton, T., Mills, M., Niemeier, U., Séférian, R. & Tilmes, S. (2023). Northern-high-latitude permafrost and terrestrial carbon response to two solar geoengineering scenarios. Earth System Dynamics, 14, 55-79. doi:10.5194/esd-14-55-2023 [publisher-version]
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- Jungclaus, J., Lorenz, S., Schmidt, H., Brovkin, V., Brüggemann, N., Chegini, F., Crueger, T., de Vrese, P., Gayler, V., Giorgetta, M., Gutjahr, O., Haak, H., Hagemann , S., Hanke, M., Ilyina, T., Korn, P., Kröger, J., Linardakis, L., Mehlmann, C., Mikolajewicz, U., Müller, W., Nabel, J., Notz, D., Pohlmann, H., Putrasahan, D., Raddatz, T., Ramme, L., Redler, R., Reick, C., Riddick, T., Sam, T., Schneck, R., Schnur, R., Schupfner, M., von Storch, J.-S., Wachsmann, F., Wieners, K.-H., Ziemen, F., Stevens, B., Marotzke, J. & Claussen, M. (2022). The ICON Earth System Model Version 1.0. Journal of Advances in Modeling Earth Systems, 14: e2021MS002813. doi:10.1029/2021MS002813 [publisher-version]
- Kirsch , B., Hohenegger, C., Klocke, D., Senke, R., Offermann, M. & Ament, F. (2022). Sub-mesoscale observations of convective cold pools with a dense station network in Hamburg, Germany. Earth System Science Data, 14, 3531-3548. doi:10.5194/essd-14-3531-2022 [publisher-version]
- Laakso, A., Niemeier, U., Visioni, D., Tilmes, S. & Kokkola, H. (2022). Dependency of the impacts of geoengineering on the stratospheric sulfur injection strategy - Part 1: Intercomparison of modal and sectional aerosol modules. Atmospheric Chemistry and Physics, 22, 93-118. doi:10.5194/acp-22-93-2022 [publisher-version][supplementary-material]
- Lee, J., Hohenegger, C., Chlond, A. & Schnur, R. (2022). The climatic role of interactive leaf phenology in the vegetation-atmosphere system of radiative-convective equilibrium storm-resolving simulations. Tellus, Series B - Chemical and Physical Meteorology, 74, 164-175. doi:10.16993/tellusb.26 [publisher-version]
- Li, X.-Y., Wang, H., Chen, J., Endo, S., George, G., Cairns, B., Chellappan, S., Zeng, X., Kirschler, S., Voigt, C., Sorooshian, A., Crosbie, E., Chen, G., Ferrare, R., Gustafson Jr., W., Hair, J., Kleb, M., Liu, H., Moore, R., Painemal, D., Robinson, C., Scarino, A., Shook, M., Shingler, T., Thornhill, K., Tornow, F., Xiao, H., Ziemba, L. & Zuidema, P. (2022). Large-eddy simulations of marine boundary layer clouds associated with cold-air outbreaks during the ACTIVATE Campaign. Part I: Case setup and sensitivities to large-scale forcings. Journal of the Atmospheric Sciences, 79, 73-100. doi:10.1175/JAS-D-21-0123.1 [publisher-version]
- Marquet, P. & Stevens, B. (2022). On moist potential temperatures and their ability to characterize differences in the properties of air parcels. Journal of the Atmospheric Sciences, 79, 1089-1103 . doi:10.1175/JAS-D-21-0095.1 [pre-print][publisher-version]
- Marshall, L., Maters, E., Schmidt, A., Timmreck, C., Robock, A. & Toohey, M. (2022). Volcanic effects on climate: recent advances and future avenues. Bulletin of Volcanology, 84: 54. doi:10.1007/s00445-022-01559-3 [publisher-version]
- Mauritsen, T., Redler, R., Esch, M., Stevens, B., Hohenegger, C., Klocke, D., Brokopf, R., Haak, H., Linardakis, L., Röber, N. & Schnur, R. (2022). Early development and tuning of a global coupled cloud resolving model, and its fast response to increasing CO2. Tellus Series A: Dynamic Meteorology and Oceanography, 74, 346-363 . doi:10.16993/tellusa.54 [publisher-version]
- Mieslinger, T., Stevens, B., Kölling, T., Brath, M., Wirth, M. & Buehler, S. (2022). Optically thin clouds in the trades. Atmospheric Chemistry and Physics, 22, 6879-6898. doi:10.5194/acp-22-6879-2022 [pre-print][publisher-version]
- Muller, C., Yang, D., Craig, G., Cronin, T., Fildier, B., Haerter, J., Hohenegger, C., Mapes, B., Randall, D., Shamekh, S. & Sherwood, S. (2022). Spontaneous aggregation of convective storms. Annual Review of Fluid Mechanics, 54, 133-157. doi:10.1146/annurev-fluid-022421-011319
- Nuijens, L., Savazzi, A., de Boer, G., Brilouet, P.-E., George, G., Lothon, M. & Zhang, D. (2022). The frictional layer in the observed momentum budget of the trades. Quarterly Journal of the Royal Meteorological Society, 148, 3343-3365. doi:10.1002/qj.4364
- Paccini Pena, L. (2022). Sensitivity of resolved convection to ocean and land surfaces in the Tropical Atlantic and Amazon Basin. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 250. doi:10.17617/2.3367420 [publisher-version]
- Radtke, J., Naumann, A., Hagen, M. & Ament, F. (2022). The relationship between precipitation and its spatial pattern in the trades observed during EUREC(4)A. Quarterly Journal of the Royal Meteorological Society, 148, 1913-1928. doi:10.1002/qj.4284
- Rauner, M. & Stevens, B. (2022). Zu viel Kinderbuch-Wolke. Die Zeit, No. 43, 32.
- Roca-Flores, E., Naumis, G., Madrigal-Solis, E. & Fraedrich, K. (2022). Typhoon complexity: Northwest Pacific tropical cyclone season complex systems analysis. International Journal of Modern Physics C: available online. doi:10.1142/S0129183123500456
- Salzmann, M., Ferrachat, S., Tully, C., Munch, S., Watson-Parris, D., Neubauer, D., Siegenthaler-LeDrian, C., Rast, S., Heinold, B., Crueger, T., Brokopf, R., Muelmenstadt, J., Quaas, J., Wan, H., Zhang, K., Lohmann, U., Stier, P. & Tegen, I. (2022). The global atmosphere-aerosol model ICON-A-HAM2.3-Initial model evaluation and effects of radiation balance tuning on aerosol optical thickness. Journal of Advances in Modeling Earth Systems, 14: e2021MS002699. doi:10.1029/2021MS002699 [publisher-version]
- Savazzi, A., Nuijens, L., Sandu, I., George, G. & Bechtold, P. (2022). The representation of the trade winds in ECMWF forecasts and reanalyses during EUREC4A. Atmospheric Chemistry and Physics, 22, 13049-13066. doi:10.5194/acp-22-13049-2022 [publisher-version]
- Schäfer, M., Wolf, K., Ehrlich, A., Hallbauer, C., Jäkel, E., Jansen, F., Luebke, A., Müller, J., Thoböll, J., Röschenthaler, T., Stevens, B. & Wendisch, M. (2022). VELOX - a new thermal infrared imager for airborne remote sensing of cloud and surface properties. Atmospheric Measurement Techniques, 15, 1491-1509. doi:10.5194/amt-15-1491-2022 [publisher-version]
- Schulz, H. (2022). C3ONTEXT: A Common Consensus on Convective OrgaNizaTion during the EUREC4A eXperimenT. Earth System Science Data, 14, 1233-1256. doi:10.5194/essd-14-1233-2022 [publisher-version]
- Segura, H., Hohenegger, C., Wengel , C. & Stevens, B. (2022). Learning by doing: seasonal and diurnal features of tropical precipitation in a global-coupled storm-resolving model. Geophysical Research Letters, 49: e2022GL101796. doi:10.1029/2022GL101796 [supplementary-material][publisher-version]
- Shi, L., Schreck III, C., John, V., Chung, E.-S., Lang, T., Buehler, S. & Soden, B. (2022). Assessing the consistency of satellite-derived upper tropospheric humidity measurements. Atmospheric Measurement Techniques, 15, 6949-6963. doi:10.5194/amt-15-6949-2022 [publisher-version]
- Shin, J., Ahn, J., Chowdhry Beeman, J., Lee, H.-G., Seo, J. & Brook, E. (2022). Millennial variations in atmospheric CO2 during the early Holocene (11.7-7.4 ka). Climate of the Past, 18, 2063-2075. doi:10.5194/cp-18-2063-2022 [publisher-version][supplementary-material]
- Sinnhuber, M., Nesse Tyssøy, H., Asikainen, T., Bender, S., Funke, B., Hendrickx, K., Pettit, J., Reddmann, T., Rozanov, E., Schmidt, H., Smith-Johnsen, C., Sukhodolov, T., Szeląg, M., van de Kamp, M., Verronen, P., Wissing, J. & Yakovchuk, O. (2022). Heppa III intercomparison experiment on electron precipitation impacts: 2. Model-measurement intercomparison of Nitric Oxide (NO) during a geomagnetic storm in April 2010. Journal of Geophysical Research: Space Physics, 127: e2021JA029466. doi:10.1029/2021JA029466 [publisher-version]
- Slingo, J., Bates, P., Bauer, P., Belcher, S., Palmer, T., Stephens, G., Stevens, B., Stocker, T. & Teutsch, G. (2022). Ambitious partnership needed for reliable climate prediction.. Nature Climate Change, 12, 499-503. doi:10.1038/s41558-022-01384-8 [any-fulltext]
- Stephan, C., Duras, J., Harris, L., Klocke, D., Putman, W., Taylor, M., Wedi, N., Žagar, N. & Ziemen , F. (2022). Atmospheric energy spectra in global kilometre-scale models. Tellus Series A-Dynamic Meteorology and Oceanography, 74, 280-299. doi:10.16993/tellusa.26 [publisher-version]
- Stevens, B. (2022). The path to km-scale climate modelling. In Festschrift in honour of Tim Palmer (pp.49-50). ECMWF / University of Oxford.
- Tilmes, S., Visioni, D., Jones, A., Haywood, J., Seferian, R., Nabat, P., Boucher, O., Bednarz, E. & Niemeier, U. (2022). Stratospheric ozone response to sulfate aerosol and solar dimming climate interventions based on the G6 Geoengineering Model Intercomparison Project (GeoMIP) simulations. Atmospheric Chemistry and Physics, 22, 4557-4579. doi:10.5194/acp-22-4557-2022 [publisher-version]
- Trumbore, S., Barros, A., Becker, T., Davidson, E., Ehlmann, B., Gruber, N., Hofmann, E., Hudson, M., Illangasekare, T., Kang, S., Montanari, A., Nimmo, F., Parsons, T., Salters, V., Schimel, D., Stevens, B., Wuebbles, D., Zeitler, P. & Zhu, T. (2022). Thank You to Our 2021 peer reviewers. AGU Advances, 3: e2022AV000716.
- van Dijk, E., Jungclaus, J., Lorenz, S., Timmreck, C. & Krueger, K. (2022). Was there a volcanic-induced long-lasting cooling over the Northern Hemisphere in the mid-6th-7th century?. Climate of the Past, 18, 1601-1623. doi:10.5194/cp-18-1601-2022 [publisher-version]
- Vogel, A., Alessa, G., Scheele, R., Weber, L., Dubovik, O., North, P. & Fiedler, S. (2022). Uncertainty in aerosol optical depth from modern aerosol-climate models, reanalyses, and satellite products. Journal of Geophysical Research: Atmospheres, 127: e2021JD035483. doi:10.1029/2021JD035483 [publisher-version]
- Vogel, R., Albright, A., Vial, J., George, G., Stevens, B. & Bony, S. (2022). Strong cloud–circulation coupling explains weak trade cumulus feedback. Nature, 612, 696-700. doi:10.1038/s41586-022-05364-y [publisher-version]
- Wang, X., Wang, C., Zhao, G., Ding, H. & Yu, M. (2022). Research progress of forest fires spread trend forecasting in Heilongjiang Province. Atmosphere, 13: 2110. doi:10.3390/atmos13122110 [publisher-version]
- Weisenstein, D., Visioni, D., Franke, H., Niemeier, U., Vattioni, S., Chiodo, G., Peter, T. & Keith, D. (2022). An interactive stratospheric aerosol model intercomparison of solar geoengineering by stratospheric injection of SO2 or accumulation-mode sulfuric acid aerosols. Atmospheric Chemistry and Physics, 22, 2955-2973. doi:10.5194/acp-22-2955-2022 [publisher-version]
- Xue, H., Giorgetta, M. & Guo, J. (2022). The daytime trapped lee wave pattern and evolution induced by two small-scale mountains of different heights. Quarterly Journal of the Royal Meteorological Society, 148, 1300-1318. doi:10.1002/qj.4262 [publisher-version]
- Zanchettin, D., Timmreck, C., Khodri, M., Schmidt, A., Toohey, M., Abe, M., Bekki, S., Cole, J., Fang, S.-W., Feng, W., Hegerl, G., Johnson, B., Lebas, N., Legrande, A., Mann, G., Marshall, L., Rieger, L., Robock, A., Rubinetti, S., Tsigaridis, K. & Weierbach, H. (2022). Effects of forcing differences and initial conditions on inter-model agreement in the VolMIP volc-pinatubo-full experiment. Geoscientific Model Development, 15, 2265-2292. doi:10.5194/gmd-15-2265-2022 [publisher-version]
- Abbott, P., Niemeier, U., Timmreck, C., Riede, F., McConnell, J., Severi, M., Fischer, H., Svensson, A., Toohey, M., Reinig, F. & Sigl, M. (2021). Volcanic climate forcing preceding the inception of the Younger Dryas: Implications for tracing the Laacher See eruption. Quaternary Science Reviews, 274: 107260. doi:10.1016/j.quascirev.2021.107260 [publisher-version]
- Aemisegger, F., Vogel, R., Graf, P., Dahinden, F., Villiger, L., Jansen, F., Bony, S., Stevens, B. & Wernli, H. (2021). How Rossby wave breaking modulates the water cycle in the North Atlantic trade wind region. Weather and Climate Dynamics, 2, 281-309. doi:10.5194/wcd-2-281-2021 [publisher-version][supplementary-material]
- Azoulay, A., Schmidt, H. & Timmreck, C. (2021). The Arctic polar vortex response to volcanic forcing of different strengths. Journal of Geophysical Research: Atmospheres, 126: e2020JD034450. doi:10.1029/2020JD034450 [supplementary-material][publisher-version]
- Ban, N., Caillaud, C., Coppola, E., Pichelli, E., Sobolowski, S., Adinolfi, M., Ahrens, B., Alias, A., Anders, I., Bastin, S., Belušić, D., Berthou, S., Brisson, E., Cardoso, R., Chan, S., Christensen, O., Fernández, J., Fita, L., Frisius, T., Gašparac, G., Giorgi, F., Goergen, K., Haugen, J., Hodnebrog, Ø., Kartsios, S., Katragkou, E., Kendon, E., Keuler, K., Lavin-Gullon, A., Lenderink, G., Leutwyler, D., Lorenz, T., Maraun, D., Mercogliano, P., Milovac, J., Panitz, H.-J., Raffa, M., Remedio, A., Schär, C., Soares, P., Srnec, L., Steensen, B., Stocchi, P., Tölle, M., Truhetz, H., Vergara-Temprado, J., de Vries, H., Warrach-Sagi, K., Wulfmeyer, V. & Zander, M. (2021). The first multi-model ensemble of regional climate simulations at kilometer-scale resolution. Part I: Evaluation of precipitation. Climate Dynamics, 57, 275-302. doi:10.1007/s00382-021-05708-w [publisher-version]
- Bao , J. & Stevens, B. (2021). The elements of the thermodynamic structure of the tropical atmosphere. Journal of the Meteorological Society of Japan, 99, 1483-1499. doi:10.2151/jmsj.2021-072 [publisher-version]
- Bao , J. & Windmiller, J. (2021). Impact of microphysics on tropical precipitation extremes in a global storm-resolving model. Geophysical Research Letters, 48: e2021GL094206. doi:10.1029/2021GL094206 [publisher-version][supplementary-material]
- Bao , J., Stevens, B., Kluft, L. & Jiménez de la Cuesta, D. (2021). Changes in the tropical lapse rate due to entrainment and their impact on climate sensitivity. Geophysical Research Letters, 48: e2021GL094969. doi:10.1029/2021GL094969 [supplementary-material][publisher-version]
- Bauer, P., Stevens, B. & Hazeleger, W. (2021). A digital twin of Earth for the green transition. Nature Climate Change, 11, 80-83. doi:10.1038/s41558-021-00986-y
- Becker, T. & Hohenegger, C. (2021). Entrainment and its dependency on environmental conditions and convective organization in convection-permitting simulations. Monthly Weather Review, 121, 537-550 . doi:10.1175/MWR-D-20-0229.1 [supplementary-material][publisher-version]
- Bock, O., Bosser, P., Flamant, C., Doerflinger, E., Jansen, F., Fages, R., Bony, S. & Schnitt, S. (2021). Integrated water vapour observations in the caribbean arc from a network of ground-based gnss receivers during eurec4a. Earth System Science Data, 13, 2407-2436. doi:10.5194/essd-13-2407-2021 [publisher-version][supplementary-material]
- Bourdin, S., Kluft, L. & Stevens, B. (2021). Dependence of climate sensitivity on the given distribution of relative humidity. Geophysical Research Letters, 48: e2021GL092462. doi:10.1029/2021GL092462 [publisher-version]
- Brenna, H., Kutterolf, S., Mills, M., Niemeier, U., Timmreck, C. & Krüger, K. (2021). Decadal disruption of the QBO by tropical volcanic supereruptions. Geophysical Research Letters, 48: e2020GL089687. doi:10.1029/2020GL089687 [publisher-version]
- Clyne, M., Lamarque, J.-F., Mills, M., Khodri, M., Ball, W., Bekki, S., Dhomse, S., Lebas, N., Mann, G., Marshall, L., Niemeier, U., Poulain, V., Robock, A., Rozanov, E., Schmidt, A., Stenke, A., Sukhodolov, T., Timmreck, C., Toohey, M., Tummon, F., Zanchettin, D., Zhu, Y. & Toon, O. (2021). Model physics and chemistry causing intermodel disagreement within the VolMIP-Tambora Interactive Stratospheric Aerosol ensemble. Atmospheric Chemistry and Physics, 31, 3317-3343. doi:10.5194/acp-21-3317-2021 [publisher-version][supplementary-material]
- Datseris, G. & Stevens, B. (2021). Earth’s albedo and its symmetry. AGU Advances, 2: e2021AV000440. doi:10.1029/2021AV000440 [publisher-version]
- Dion, I.-A., Dallet, C., Ricaud, P., Carminati, F., Dauhut, T. & Haynes, P. (2021). Ice injected into the tropopause by deep convection - Part 2: Over the Maritime Continent. Atmospheric Chemistry and Physics, 21, 2191-2210. doi:10.5194/acp-21-2191-2021 [publisher-version]
- Fang, S.-W., Khodri, M., Timmreck, C., Zanchettin, D. & Jungclaus, J. (2021). Disentangling internal and external contributions to Atlantic multidecadal variabilityover the past millennium. Geophysical Research Letters, 48: e2021GL095990. doi:10.1029/2021GL095990 [publisher-version]
- Franke, H., Niemeier, U. & Visioni, D. (2021). Differences in the QBO response to stratospheric aerosol modification depending on injection strategy and species. Atmospheric Chemistry and Physics, 21, 8615-8635. doi:10.5194/acp-21-8615-2021 [supplementary-material][publisher-version][supplementary-material]
- George , G., Stevens, B., Bony, S., Klingebiel, M. & Vogel, R. (2021). Observed impact of meso-scale vertical motion on cloudiness. Journal of the Atmospheric Sciences, 78, 2413-2427. doi:10.1175/JAS-D-20-0335.1 [publisher-version]
- George, G. (2021). Observations of meso-scale circulation and its relationship with cloudiness in the Tropics. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 246. doi:10.17617/2.3340355 [publisher-version]
- George, G., Stevens, B., Bony, S., Pincus, R., Fairall, C., Schulz, H., Kölling, T., Kalen, Q., Klingebiel, M., Konow, H., Lundry, A., Prange, M. & Radtke, J. (2021). JOANNE: Joint dropsonde Observations of the Atmosphere in tropical North atlaNtic mesoscale Environments. Earth System Science Data, 13, 5253-5272. doi:10.5194/essd-13-5253-2021 [publisher-version]
- Hirsch, L. & Stevens, B. (2021). EUREC4A - ein Feldexperiment. Jahrbuch / Max-Planck-Gesellschaft, 2021. [publisher-version]
- Jones, C., Hickman, J., Rumbold, S., Walton, J., Lamboll, R., Skeie, R., Fiedler, S., Forster, P., Rogelj, J., Abe, M., Botzet, M., Calvin, K., Cassou, C., Cole, J., Davini, P., Deushi, M., Dix, M., Fyfe, J., Gillett, N., Ilyina, T., Kawamiya, M., Kelley, M., Kharin, S., Koshiro, T., Li, H., Mackallah, C., Müller, W., Nabat, P., van Noije, T., Nolan, P., Ohgaito, R., Olivié, D., Oshima, N., Parodi, J., Reerink, T., Ren, L., Romanou, A., Séférian, R., Tang, Y., Timmreck, C., Tjiputra, J., Tourigny, E., Tsigaridis, K., Wang, H., Wu, M., Wyser, K., Yang, S., Yang, Y. & Ziehn, T. (2021). The climate response to emissions reductions due to COVID-19: Initial results from CovidMIP. Geophysical Research Letters, 48: e2020GL091883. doi:10.1029/2020GL091883 [publisher-version]
- Judt, F., Klocke, D., Rios-Berrios, R., Vanniere, B., Ziemen, F., Auger, L., Biercamp, J., Bretherton, C., Chen, X., Düben, P., Hohenegger, C., Khairoutdinov, M., Kodama, C., Kornblueh, L., Lin, S.-J., Nakano, M., Neumann, P., Putman, W., Röber, N., Roberts, M., Satoh, M., Shibuya, R., Stevens, B., Vidale, P., Wedi, N. & Zhou, L. (2021). Tropical cyclones in global storm-resolving models. Journal of the Meteorological Society of Japan, 99, 579-602. doi:10.2151/jmsj.2021-029 [publisher-version]
- Jung, H., Naumann, A. & Stevens, B. (2021). Convective self-aggregation in a mean flow. Atmospheric Chemistry and Physics, 21, 10337-10345. doi:10.5194/acp-21-10337-2021 [publisher-version]
- Jungandreas, L., Hohenegger, C. & Claussen, M. (2021). Influence of the representation of convection on the mid-Holocene West African Monsoon. Climate of the Past, 17, 1665-1684. doi:10.5194/cp-17-1665-2021 [supplementary-material][publisher-version]
- Karpechko, A., Tyrrell, N. & Rast, S. (2021). Sensitivity of QBO teleconnection to model circulation biases. Quarterly Journal of the Royal Meteorological Society, 147, 2147-2159. doi:10.1002/qj.4014
- Keil, P., Schmidt, H., Stevens, B. & Bao , J. (2021). Variations of tropical lapse rates in climate models and their implications for upper tropospheric warming. Journal of Climate, 34, 9747-9761. doi:10.1175/JCLI-D-21-0196.1 [publisher-version]
- Khabbazan, M., Stankoweit, M., Roshan, E., Schmidt, H. & Held, H. (2021). How can solar geoengineering and mitigation be combined under climate targets?. Earth System Dynamics, 12, 1529-1542. doi:10.5194/esd-12-1529-2021 [publisher-version]
- Kim, S.-M., Koo, J.-H., Lee, H., Mok, J., Choi, M., Go, S., Lee, S., Cho, Y., Hong, J., Seo, S., Lee, J., Hong, J.-W. & Kim, J. (2021). Comparison of pm2.5 in Seoul, Korea estimated from the various ground-based and satellite aod. Applied Sciences (Switzerland), 11. doi:10.3390/app112210755 [publisher-version]
- Kirsch, B., Ament, F. & Hohenegger, C. (2021). Convective cold pools in long-term boundary layer mast observations. Monthly Weather Review, 149, 811-820. doi:10.1175/MWR-D-20-0197.1 [publisher-version]
- Klingebiel, M., Konow, H. & Stevens, B. (2021). Measuring shallow convective mass flux profiles in the trade wind region. Journal of the Atmospheric Sciences, 78, 3205-3214. doi:10.1175/JAS-D-20-0347.1 [publisher-version]
- Kluft, L., Dacie, S., Brath, M., Buehler, S. & Stevens, B. (2021). Temperature-dependence of the clear-sky feedback in radiative-convective equilibrium. Geophysical Research Letters, 48: e2021GL094649. doi:10.1029/2021GL094649 [publisher-version]
- Knapp, M., Kleinschek, R., Hase, F., Agustí-Panareda, A., Inness, A., Barré, J., Landgraf, J., Borsdorff, T., Kinne, S. & Butz, A. (2021). Shipborne measurements of XCO2, XCH4, and XCO above the Pacific Ocean and comparison to CAMS atmospheric analyses and S5P/TROPOMI. Earth System Science Data, 13, 199-211. doi:10.5194/essd-13-199-2021 [publisher-version]
- Knizhnik, K., Leake, J., Linton, M. & Dacie, S. (2021). The rise and emergence of untwisted toroidal flux ropes on the sun. Astrophysical Journal, 907: 19. doi:10.3847/1538-4357/abccc0 [publisher-version]
- Konow, H., Ewald, F., George, G., Jacob, M., Klingebiel, M., Kölling, T., Luebke, A., Mieslinger, T., Pörtge, V., Radtke, J., Schäfer, M., Schulz, H., Vogel, R., Wirth, M., Bony, S., Crewell, S., Ehrlich, A., Forster, L., Giez, A., Gödde, F., Groß, S., Gutleben, M., Hagen, M., Hirsch, L., Jansen, F., Lang, T., Mayer, B., Mech, M., Prange, M., Schnitt, S., Vial, J., Walbröl, A., Wendisch, M., Wolf, K., Zinner, T., Zöger, M., Ament , F. & Stevens, B. (2021). EUREC4A's HALO. Earth System Science Data, 13, 5545-5563. doi:10.5194/essd-13-5545-2021 [publisher-version][supplementary-material]
- Kraemer, K., Datseris, G., Kurths, J., Kiss, I., Ocampo-Espindola, J. & Marwan, N. (2021). A unified and automated approach to attractor reconstruction. New Journal of Physics, 23: 033017. doi:10.1088/1367-2630/abe336 [publisher-version]
- Kravitz, B., MacMartin, D., Visioni, D., Boucher, O., Cole, J., Haywood, J., Jones, A., Lurton, T., Nabat, P., Niemeier, U., Robock, A., Séférian, R. & Tilmes, S. (2021). Comparing different generations of idealized solar geoengineering simulations in the Geoengineering Model Intercomparison Project (GeoMIP). Atmospheric Chemistry and Physics, 21, 4231-4247. doi:10.5194/acp-21-4231-2021 [publisher-version]
- Kroll , C., Dacie, S., Azoulay, A., Schmidt, H. & Timmreck, C. (2021). The impact of volcanic eruptions of different magnitude on stratospheric water vapour in the tropics. Atmospheric Chemistry and Physics, 21, 6565-6591. doi:10.5194/acp-21-6565-2021 [supplementary-material][publisher-version]
- Lang, T., Naumann, A., Stevens, B. & Buehler, S. (2021). Tropical free-tropospheric humidity differences and their effect on the clear-sky radiation budget in global strom-resolving models. Journal of Advances in Modeling Earth Systems, 13: e2021MS002514. doi:10.1029/2021MS002514 [publisher-version]
- Leutwyler, D., Imamovic, A. & Schär, C. (2021). The continental-scale soil-moisture precipitation feedback in Europe with parameterized and explicit convection. Journal of Climate, 34, 5303-5320. doi:10.1175/JCLI-D-20-0415.1 [supplementary-material][publisher-version]
- Leutwyler, D. & Hohenegger, C. (2021). Weak cooling of the troposphere by tropical islands in simulations of the radiative-convective equilibrium. Quarterly Journal of the Royal Meteorological Society, 147, 1788-1800. doi:10.1002/qj.3995 [supplementary-material][publisher-version]
- Li, C., Brasseur, G., Schmidt, H. & Mellado, J. (2021). Error induced by neglecting subgrid chemical segregation due to inefficient turbulent mixing in regional chemical-transport models in urban environments. Atmospheric Chemistry and Physics, 21, 483-503. doi:10.5194/acp-21-483-2021 [supplementary-material][publisher-version]
- Malinina, E., Rozanov, A., Niemeier, U., Peglow, S., Arosio, C., Wrana, F., Timmreck, C., von Savigny, C. & Burrows, J. (2021). Changes in stratospheric aerosol extinction coefficient after the 2018 Ambae eruption as seen by OMPS-LP and ECHAM5-HAM. Atmospheric Chemistry and Physics, 21, 14871-14891. doi:10.5194/acp-21-14871-2021 [publisher-version][supplementary-material]
- Mieslinger, T. (2021). Small and optically thin clouds in the trades. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 249. doi:10.17617/2.3357892 [publisher-version]
- Moon, S., Baik, J.-J. & Seo, J. (2021). Chaos synchronization in generalized Lorenz systems and an application to image encryption. Communications in Nonlinear Science and Numerical Simulation, 96: 105708. doi:10.1016/j.cnsns.2021.105708 [publisher-version]
- Moon, S., Baik, J.-J., Seo, J. & Han, B.-S. (2021). Effects of density affecting scalar on the onset of chaos in a simplified model of thermal convection: a nonlinear dynamical perspective. The European Physical Journal Plus, 136: 92. doi:10.1140/epjp/s13360-020-01047-7
- Niemeier, U., Riede, F. & Timmreck, C. (2021). Simulation of ash clouds after a Laacher See-type eruption. Climate of the Past, 17, 633-652. doi:10.5194/cp-17-633-2021 [publisher-version][supplementary-material]
- Paccini, L., Hohenegger, C. & Stevens, B. (2021). Explicit versus parameterized convection in response to the Atlantic Meridional Mode. Journal of Climate, 34, 3343-3354. doi:10.1175/JCLI-D-20-0224.1 [supplementary-material][publisher-version]
- Park, J., Moon, S., Seo, J. & Baik, J.-J. (2021). Systematic comparison between the generalized Lorenz equations and DNS in the two-dimensional Rayleigh–Bénard convection. Chaos, 31: 073119. doi:10.1063/5.0051482 [publisher-version]
- Quinn, P., Thompson, E., Coffman, D., Baidar, S., Bariteau, L., Bates, T., Bigorre, S., Brewer, A., de Boer, G., de Szoeke, S., Drushka, K., Foltz, G., Intrieri, J., Iyer, S., Fairall, C., Gaston, C., Jansen, F., Johnson, J., Krüger, O., Marchbanks, R., Moran, K., Noone, D., Pezoa, S., Pincus, R., Plueddemann, A., Pöhlker, M., Pöschl, U., Melendez, E., Royer, H., Szczodrak, M., Thomson, J., Upchurch, L., Zhang, C., Zhang, D. & Zuidema, P. (2021). Measurements from the RV Ronald H. Brown and related platforms as part of the Atlantic Tradewind Ocean-Atmosphere Mesoscale Interaction Campaign (ATOMIC). Earth System Science Data, 13, 1759-1790. doi:10.5194/essd-13-1759-2021 [publisher-version]
- Radtke, J., Mauritsen, T. & Hohenegger, C. (2021). Shallow cumulus cloud feedback in large eddy simulations - Bridging the gap to storm resolving models. Atmospheric Chemistry and Physics, 21, 3278-3288. doi:10.5194/acp-21-3275-2021 [publisher-version]
- Ricchi, A., Bonaldo, D., Cioni, G., Carniel, S. & Miglietta, M. (2021). Simulation of a flash-flood event over the Adriatic Sea with a high-resolution atmosphere–ocean–wave coupled system. Scientific Reports, 11: 9388. doi:10.1038/s41598-021-88476-1 [publisher-version]
- Röber, N., Böttinger, M. & Stevens, B. (2021). Visualization of climate science simulation data. IEEE Computer Graphics and Applications, 41, 42-48: 9325132. doi:10.1109/MCG.2020.3043987 [publisher-version]
- Rochetin, N., Hohenegger, C., Touzé-Peiffer, L. & Villefranque, N. (2021). A physically based definition of convectively generated density currents: detection and characterization in convection-permitting simulations. Journal of Advances in Modeling Earth Systems, 13: e2020MS002402. doi:10.1029/2020MS002402 [publisher-version]
- Roh, W., Satoh, M. & Hohenegger, C. (2021). Intercomparison of cloud properties in DYAMOND simulations over the Atlantic Ocean. Journal of the Meteorological Society of Japan, 99, 1439-1451. doi:10.2151/jmsj.2021-070 [publisher-version]
- Schulz, H. (2021). Meso-scale patterns of shallow convection in the trades. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 248. doi:10.17617/2.3357904 [publisher-version]
- Schulz, H., Eastman, R. & Stevens, B. (2021). Characterization and evolution of organized shallow convection in the downstream North Atlantic trades. Journal of Geophysical Research: Atmospheres, 126: e2021JD034575. doi:10.1029/2021JD034575 [publisher-version]
- Schutgens, N., Dubovik, O., Hasekamp, O., Torres, O., Jethva, H., Leonard, P., Litvinov, P., Redemann, J., Shinozuka, Y., De Leeuw, G., Kinne, S., Popp, T., Schulz, M. & Stier, P. (2021). AEROCOM and AEROSAT AAOD and SSA study - Part 1: Evaluation and intercomparison of satellite measurements. Atmospheric Chemistry and Physics, 21, 6895-6917. doi:10.5194/acp-21-6895-2021 [publisher-version][supplementary-material]
- Schwendike, J., Berry, G., Fodor, K. & Reeder, M. (2021). On the relationship between the Madden-Julian Oscillation and the Hadley and Walker Circulations. Journal of Geophysical Research: Atmospheres, 126: e2019JD032117. doi:10.1029/2019JD032117 [publisher-version]
- Stephan, C. & Mariaccia, A. (2021). The signature of the tropospheric gravity wave background in observed mesoscale motion. Weather and Climate Dynamics, 2, 359-372. doi:10.5194/wcd-2-359-2021 [publisher-version]
- Stephan, C., Zagar, N. & Shepherd, T. (2021). Waves and coherent flows in the tropical atmosphere: new opportunities, old challenges. Quarterly Journal of the Royal Meteorological Society, 147, 2597-2624. doi:10.1002/qj.4109 [publisher-version]
- Stephan, C. (2021). Mechanism for the formation of arc-shaped cloud lines over the tropical oceans. Journal of the Atmospheric Sciences, 78, 817-824. doi:10.1175/JAS-D-20-0129.1 [publisher-version]
- Stephan, C., Schnitt, S., Schulz, H., Bellenger, H., de Szoeke, S., Acquistapace, C., Baier , K., Dauhut, T., Laxenaire, R., Morfa Avalos, Y., Person, R., Meléndez, E., Bagheri, G., Böck, T., Daley, A., Güttler, J., Helfer, K., Los, S., Neuberger, A., Röttenbacher, J., Raeke, A., Ringel, M., Ritschel, M., Sadoulet, P., Schirmacher, I., Stolla, M., Wright, E., Charpentier, B., Doerenbecher, A., Wilson, R., Jansen, F., Kinne, S., Reverdin, G., Speich, S., Bony, S. & Stevens, B. (2021). Ship- and island-based atmospheric soundings from the 2020 EUREC4A field campaign. Earth System Science Data, 13, 491-514. doi:10.5194/essd-13-491-2021 [publisher-version]
- Stevens, B., Bony, S., Farrell, D., Ament, F., Blyth, A., Fairall, C., Karstensen, J., Quinn, P., Speich, S., Acquistapace, C., Aemisegger, F., Albright, A., Bellenger, H., Bodenschatz, E., Caesar, K.-A., Chewitt-Lucas, R., de Boer, G., Delanoë, J., Denby, L., Ewald, F., Fildier, B., Forde, M., George, G., Gross, S., Hagen, M., Hausold, A., Heywood, K., Hirsch, L., Jacob, M., Jansen, F., Kinne, S., Klocke, D., Kölling, T., Konow, H., Lothon, M., Mohr, W., Naumann, A., Nuijens, L., Olivier, L., Pincus, R., Pöhlker, M., Reverdin, G., Roberts, G., Schnitt, S., Schulz, H., Siebesma, A., Stephan, C., Sullivan, P., Touzé-Peiffer, L., Vial, J., Vogel, R., Zuidema, P., Alexander, N., Alves, L., Arixi, S., Asmath, H., Bagheri, G., Baier , K., Bailey, A., Baranowski, D., Baron, A., Barrau, S., Barrett, P., Batier, F., Behrendt, A., Bendinger, A., Beucher, F., Bigorre, S., Blades, E., Blossey, P., Bock, O., Böing, S., Bosser, P., Bourras, D., Bouruet-Aubertot, P., Bower, K., Branellec, P., Branger, H., Brennek, M., Brewer, A., Brilouet, P.-E., Brügmann, B., Buehler, S., Burke, E., Burton, R., Calmer, R., Canonici, J.-C., Carton, X., Cato, G., Charles, J., Chazette, P., Chen, Y., Chilinski, M., Choularton, T., Chuang, P., Clarke, S., Coe, H., Cornet, C., Coutris, P., Couvreux, F., Crewell, S., Cronin, T., Cui, Z., Cuypers, Y., Daley, A., Damerell, G., Dauhut, T., Deneke, H., Desbios, J.-P., Dörner, S., Donner, S., Douet, V., Drushka, K., Dütsch, M., Ehrlich, A., Emanuel, K., Emmanouilidis, A., Etienne, J.-C., Etienne-Leblanc, S., Faure, G., Feingold, G., Ferrero, L., Fix, A., Flamant, C., Flatau, P., Foltz, G., Forster, L., Furtuna, I., Gadian, A., Galewsky, J., Gallagher, M., Gallimore, P., Gaston, C., Gentemann, C., Geyskens, N., Giez, A., Gollop, J., Gouirand, I., Gourbeyre, C., de Graaf, D., de Groot, G., Grosz, R., Güttler, J., Gutleben, M., Hall, K., Harris, G., Helfer, K., Henze, D., Herbert, C., Holanda, B., Ibanez-Landeta, A., Intrieri, J., Iyer, S., Julien, F., Kalesse, H., Kazil, J., Kellman, A., Kidane, A., Kirchner, U., Klingebiel, M., Körner, M., Kremper, L., Kretzschmar, J., Krüger, O., Kumala, W., Kurz, A., L'Hégaret, P., Labaste, M., Lachlan-Cope, T., Laing, A., Landschützer, P., Lang, T., Lange, D., Lange, I., Laplace, C., Lavik, G., Laxenaire, R., Le Bihan, C., Leandro, M., Lefevre, N., Lena, M., Lenschow, D., Li, Q., Lloyd, G., Los, S., Losi, N., Lovell, O., Luneau, C., Makuch, P., Malinowski, S., Manta, G., Marinou, E., Marsden, N., Masson, S., Maury, N., Mayer, B., Mayers-Als, M., Mazel, C., McGeary, W., McWilliams, J., Mech, M., Mehlmann, M., Meroni, A., Mieslinger, T., Minikin, A., Minnett, P., Möller, G., Morfa Avalos, Y., Muller, C., Musat, I., Napoli, A., Neuberger, A., Noisel, C., Noone, D., Nordsiek, F., Nowak, J., Oswald, L., Parker, D., Peck, C., Person, R., Philippi, M., Plueddemann, A., Pöhlker, C., Pörtge, V., Pöschl, U., Pologne, L., Posyniak, M., Prange, M., Meléndez, E., Radtke, J., Ramage, K., Reimann, J., Renault, L., Reus, K., Reyes, A., Ribbe, J., Ringel, M., Ritschel, M., Rocha, C., Rochetin, N., Röttenbacher, J., Rollo, C., Royer, H., Sadoulet, P., Saffin, L., Sandiford, S., Sandu, I., Schäfer, M., Schemann, V., Schirmacher, I., Schlenczek, O., Schmidt, J., Schröder, M., Schwarzenboeck, A., Sealy, A., Senff, C., Serikov, I., Shohan, S., Siddle, E., Smirnov, A., Späth, F., Spooner, B., Stolla, M., Szkółka, W., de Szoeke, S., Tarot, S., Tetoni, E., Thompson, E., Thomson, J., Tomassini, L., Totems, J., Ubele, A., Villiger, L., von Arx, J., Wagner, T., Walther, A., Webber, B., Wendisch, M., Whitehall, S., Wiltshire, A., Wing, A., Wirth, M., Wiskandt, J., Wolf, K., Worbes, L., Wright, E., Wulfmeyer, V., Young, S., Zhang, C., Zhang, D., Ziemen, F., Zinner, T. & Zöger, M. (2021). EUREC4A. Earth System Science Data, 13, 4067-4119. doi:10.5194/essd-13-4067-2021 [publisher-version]
- Stevens, B. & Satoh, M. (2021). Editorial for the special edition on DYAMOND: The DYnamics of the Atmospheric general circulation Modeled On Non-hydrostatic Domains. Journal of the Meteorological Society of Japan, 99, 1393-1394. doi:10.2151/jmsj.2021-d [publisher-version]
- Stober, G., Kuchar, A., Pokhotelov, D., Liu, H., Liu, H.-L., Schmidt, H., Jacobi, C., Baumgarten, K., Brown, P., Janches, D., Murphy, D., Kozlovsky, A., Lester, M., Belova, E., Kero, J. & Mitchell, N. (2021). Interhemispheric differences of mesosphere-lower thermosphere winds and tides investigated from three whole-atmosphere models and meteor radar observations. Atmospheric Chemistry and Physics, 21, 13855-13902. doi:10.5194/acp-21-13855-2021 [publisher-version]
- Thornhill, G., Collins, W., Olivié, D., Skeie, R., Archibald, A., Bauer, S., Checa-Garcia, R., Fiedler, S., Folberth, G., Gjermundsen, A., Horowitz, L., Lamarque, J.-F., Michou, M., Mulcahy, J., Nabat, P., Naik, V., O'Connor, F., Paulot, F., Schulz, M., Scott, C., Séférian, R., Smith, C., Takemura, T., Tilmes, S., Tsigaridis, K. & Weber, J. (2021). Climate-driven chemistry and aerosol feedbacks in CMIP6 Earth system models. Atmospheric Chemistry and Physics, 21, 1105-1126. doi:10.5194/acp-21-1105-2021 [publisher-version][supplementary-material]
- Timmreck, C., Toohey, M., Zanchettin, D., Brönnimann, S., Lundstadt, E. & Wilson, R. (2021). The unidentified eruption of 1809: a climatic cold case. Climate of the Past, 17, 1455-1482. doi:10.5194/cp-17-1455-2021 [supplementary-material][publisher-version][supplementary-material]
- Trumbore, S., Barros, A., Becker, T., Davidson, E., Ehlmann, B., Gruber, N., Hofmann, E., Hudson, M., Illangasekare, T., Kang, S., Melanotte-Rizzoli, P., Montanari, A., Nimmo, F., Parsons, T., Salters, V., Schimel, D., Stevens, B., Wuebbles, D., Zeitler, P. & Zhu, T. (2021). Thank You to Our 2020 peer reviewers. AGU Advances, 2: e2021AV000426.
- Uribe, A., Vial, J. & Mauritsen, T. (2021). Sensitivity of tropical extreme precipitation to surface warming in aquaplanet experiments using a global nonhydrostatic model. Geophysical Research Letters, 48: e2020GL091371. doi:10.1029/2020GL091371 [publisher-version]
- Vial, J., Vogel, R. & Schulz, H. (2021). On the daily cycle of mesoscale cloud organization in the winter trades. Quarterly Journal of the Royal Meteorological Society, 147, 2850-2873. doi:10.1002/qj.4103 [publisher-version]
- Visioni, D., Macmartin, D., Kravitz, B., Boucher, O., Jones, A., Lurton, T., Martine, M., Mills, M., Nabat, P., Niemeier, U., Séférian, R. & Tilmes, S. (2021). Identifying the sources of uncertainty in climate model simulations of solar radiation modification with the G6sulfur and G6solar Geoengineering Model Intercomparison Project (GeoMIP) simulations. Atmospheric Chemistry and Physics, 21, 10039-10063. doi:10.5194/acp-21-10039-2021 [publisher-version][supplementary-material]
- Vogel, R., Konow, H., Schulz, H. & Zuidema, P. (2021). A climatology of trade-wind cumulus cold pools and their link to mesoscale cloud organization. Atmospheric Chemistry and Physics, 21, 16609-16630. doi:10.5194/acp-21-16609-2021 [publisher-version]
- Wagner, T., Dörner, S., Beirle, S., Donner, S. & Kinne, S. (2021). Quantitative comparison of measured and simulated O4 absorptions for one day with extremely low aerosol load over the tropical Atlantic. Atmospheric Measurement Techniques, 14, 3871-3893. doi:10.5194/amt-14-3871-2021 [publisher-version]
- Xue, H. & Giorgetta, M. (2021). A large-eddy simulation study on the diurnally evolving nonlinear trapped lee waves over a two-dimensional steep mountain. Journal of the Atmospheric Sciences, 78, 399-415. doi:10.1175/JAS-D-20-0085.1 [publisher-version]
- Zeitler, P., Barros, A., Becker, T., Davidson, E., Ehlmann, B., Gruber, N., Hofmann, E., Hudson, M., Illangasekare, T., Kang, S., Malanotte Rizzoli, P., Moerchen, M., Nimmo, F., Parsons, T., Salters, V., Stevens, B., Trumbore, S., Wuebbles, D. & Zhu, T. (2021). Confronting racism to advance our science. AGU Advances, 2: e2020AV000296. doi:10.1029/2020AV000296 [publisher-version]
- Annan, J., Hargreaves, J., Mauritsen, T. & Stevens, B. (2020). What could we learn about climate sensitivity from variability in the surface temperature record?. Earth System Dynamics, 11, 709-719. doi:10.5194/esd-11-709-2020 [publisher-version][supplementary-material]
- Baba, Y. & Giorgetta, M. (2020). Tropical variability simulated in ICON-A with a spectral cumulus parameterization. Journal of Advances in Modeling Earth Systems, 12: e2019MS001732. doi:10.1029/2019MS001732 [publisher-version]
- Bader, J., Jungclaus, J., Krivova, N., Lorenz, S., Maycock, A., Raddatz, T., Schmidt, H., Toohey, M., Wu, C.-J. & Claussen, M. (2020). Global temperature modes shed light on the Holocene temperature conundrum. Nature Communications, 11: 4726. doi:10.1038/s41467-020-18478-6 [publisher-version]
- Becker, T. & Wing, A. (2020). Understanding the extreme spread in climate sensitivity within the Radiative-Convective Equilibrium Model Intercomparison Project. Journal of Advances in Modeling Earth Systems, 12: e2020MS002165. doi:10.1029/2020MS002165 [supplementary-material][publisher-version]
- Bellouin, N., Quaas, J., Gryspeerdt, E., Kinne, S., Stier, P., Watson-Parris, D., Boucher, O., Carslaw, K., Christensen, M., Daniau, A.-L., Dufresne, J.-L., Feingold, G., Fiedler, S., Forster, P., Gettelman, A., Haywood, J., Malavelle, F., Lohmann, U., Mauritsen, T., McCoy, D., Myhre, G., Mülmenstädt, J., Neubauer, D., Possner, A., Rugenstein, M., Sato, Y., Schulz, M., Schwartz, S., Sourdeval, O., Storelvmo, T., Toll, V., Winker, D. & Stevens, B. (2020). Bounding aerosol radiative forcing of climate change. Reviews of Geophysics, 58: e2019RG000660. doi:10.1029/2019RG000660 [publisher-version]
- Beucler*, T., Leutwyler*, D. & Windmiller*, J. (2020). Quantifying convective aggregation using the tropical moist margin's length. Journal of Advances in Modeling Earth Systems, 12: e2020MS002092. doi:10.1029/2020MS002092 [publisher-version]
- Bony, S., Schulz, H., Vial, J. & Stevens, B. (2020). Sugar, gravel, fish, and flowers: Dependence of mesoscale patterns of trade-wind clouds on environmental conditions. Geophysical Research Letters, 47: e2019GL085988. doi:10.1029/2019GL085988 [publisher-version][supplementary-material]
- Bony, S. & Stevens, B. (2020). Clouds and warming. In Clouds and climate: Climate science's greatest challenge (pp.356-388). Cambridge: Cambridge University Press.
- Brueck, M., Hohenegger, C. & Stevens, B. (2020). Mesoscale marine tropical precipitation varies independently from the spatial arrangement of its convective cells. Quarterly Journal of the Royal Meteorological Society, 146, 1391-1402. doi:10.1002/qj.3742 [publisher-version]
- Costa-Suros, M., Sourdeval, O., Acquistapace, C., Baars, H., Henken, C., Genz, C., Hesemann, J., Jimenez, C., Koenig, M., Kretzschmar, J., Madenach, N., Meyer I, C., Schroedner, R., Seifert, P., Senf, F., Brueck, M., Cioni, G., Engels, J., Fieg, K., Gorges, K., Heinze, R., Siligam, P., Burkhardt, U., Crewell, S., Hoose, C., Seifert, A., Tegen, I. & Quaas, J. (2020). Detection and attribution of aerosol-cloud interactions in large-domain large-eddy simulations with the ICOsahedral Non-hydrostatic model. Atmospheric Chemistry and Physics, 20, 5657-5678. doi:10.5194/acp-20-5657-2020 [publisher-version]
- Dacie, S. (2020). Using simple models to understand changes in the tropical mean atmosphere under warming. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 233. doi:10.17617/2.3243249 [publisher-version]
- Dagan, G., Stier, P., Christensen, M., Cioni, G., Klocke, D. & Seifert, A. (2020). Atmospheric energy budget response to idealized aerosol perturbation in tropical cloud systems. Atmospheric Chemistry and Physics, 20, 4523-4544. doi:10.5194/acp-20-4523-2020 [publisher-version][supplementary-material]
- Dauhut, T., Noel, V. & Dion, I.-A. (2020). Diurnal cycle of clouds extending above the tropical tropopause observed by spaceborne lidar. Atmospheric Chemistry and Physics, 20, 3921-3929. doi:10.5194/acp-20-3921-2020 [supplementary-material][publisher-version]
- Drotos, G., Becker, T., Mauritsen, T. & Stevens, B. (2020). Global variability in radiative-convective equilibrium with a slab ocean under a wide range of CO2 concentrations. Tellus Series A-Dynamic Meteorology and Oceanography, 72, 1-19. doi:10.1080/16000870.2019.1699387 [publisher-version][supplementary-material]
- Fiedler, S., Crueger, T., D'Agostino, R., Peters, K., Becker, T., Leutwyler, D., Paccini, L., Burdanowitz, J., Buehler, S., Uribe, A., Dauhut, T., Dommenget, D., Fraedrich, K., Jungandreas, L., Maher, N., Naumann, A., Rugenstein, M., Sakradzija, M., Schmidt, H., Sielmann, F., Stephan, C., Timmreck, C., Zhu , X. & Stevens, B. (2020). Simulated tropical precipitation assessed across three major phases of the Coupled Model Intercomparison Project (CMIP). Monthly Weather Review, 148, 3653-3680. doi:10.1175/MWR-D-19-0404.1 [publisher-version][supplementary-material]
- Fodor, K. & Mellado, J.-P. (2020). New insights into shear effects on entrainment in convective boundary layers using conditional analysis. Journal of the Atmospheric Sciences, 77, 3227-3248. doi:10.1175/JAS-D-19-0345.1 [publisher-version]
- Fodor, K. (2020). The influence of large coherent structures on near-surface and entrainment zone properties in convective boundary layers. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 227. doi:10.17617/2.3230154 [publisher-version]
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- Karpechko, A. & Manzini, E. (2017). Arctic stratosphere dynamical response to global warming. Journal of Climate, 30, 7071-7086. doi:10.1175/JCLI-D-16-0781.1 [publisher-version][supplementary-material]
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- Klocke, D., Brueck, M., Hohenegger, C. & Stevens, B. (2017). Rediscovering the doldrums in cloud resolving simulations of the Tropical Atlantic. Nature Geoscience, 10, 891-896. doi:10.1038/s41561-017-0005-4
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- Niemeier, U. & Schmidt, H. (2017). Changing transport processes in the stratosphere by radiative heating of sulfate aerosols. Atmospheric Chemistry and Physics, 17, 14871-14886. doi:10.5194/acp-17-14871-2017 [publisher-version][supplementary-material]
- Niemeier, U. & Tilmes, S. (2017). Sulfur injections for a cooler planet. Science, 357, 246-248. doi:10.1126/science.aan3317
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- Peters, K. & Hohenegger, C. (2017). On the dependence of squall-line characteristics on surface conditions. Journal of the Atmospheric Sciences, 74, 2211-2228. doi:10.1175/JAS-D-16-0290.1 [publisher-version]
- Pincus, R., Winker, D., Bony, S. & Stevens, B. (2017). Preface to the Special Issue "ISSI Workshop on Shallow Clouds and Water Vapor, Circulation and Climate Sensitivity". Surveys in Geophysics, 38, 1171-1172. doi:10.1007/s10712-017-9441-3
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- Retsch, M., Hohenegger, C. & Stevens, B. (2017). Vertical resolution refinement in an aqua-planet and its effect on the ITCZ. Journal of Advances in Modeling Earth Systems, 9, 2425-2436 . doi:10.1002/2017MS001010 [supplementary-material][publisher-version]
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- Sakradzija, M. & Hohenegger, C. (2017). What determines the distribution of ahallow convective mass flux through cloud base?. Journal of the Atmospheric Sciences, 74, 2615-2632. doi:10.1175/JAS-D-16-0326.1 [publisher-version]
- Sand, M., Samset, B., Balkanski, Y., Bauer, S., Bellouin, N., Berntsen, T., Bian, H., Chin, M., Diehl, T., Easter, R., Ghan, S., Iversen, T., Kirkevag, A., Lamarque, J.-F., Lin, G., Liu, X., Luo, G., Myhre, G., van Noije, T., Penner, J., Schulz, M., Seland, O., Skeie, R., Stier, P., Takemura, T., Tsigaridis, K., Yu, F., Zhang, K. & Zhang, H. (2017). Aerosols at the poles: an AeroCom Phase II multi-model evaluation. Atmospheric Chemistry and Physics, 17, 12197-12218. doi:10.5194/acp-17-12197-2017 [publisher-version][supplementary-material]
- Schmidt, H., Eyring, V., Latif, M., Rechid, D. & Sausen, R. (2017). Globale Sicht des Klimawandels. In Brasseur, G., Jacob, D. & Schuck-Zöller, S. (Eds.), Klimawandel in Deutschland: Entwicklung, Folgen, Risiken und Perspektiven (pp.8-16). Berlin: Springer. doi:10.1007/978-3-662-50397-3_2 [publisher-version]
- Schubert-Frisius, M., Feser, F., von Storch, H. & Rast, S. (2017). Optimal spectral nudging for global dynamic downscaling. Monthly Weather Review, 145, 909-927. doi:10.1175/MWR-D-16-0036.1 [publisher-version]
- Siongco, A., Hohenegger, C. & Stevens, B. (2017). Sensitivity of the summertime tropical Atlantic precipitation distribution to convective parameterization and model resolution in ECHAM6. Journal of Geophysical Research-Atmospheres, 122, 2579-2594. doi:10.1002/2016JD026093 [publisher-version]
- Stevens, B. & Fiedler, S. (2017). Reply to “Comment on ‘Rethinking the lower bound on aerosol radiative forcing’” (Kretzschmar, J. et al (2017), J. Clim., 30, 6579–6584). Journal of Climate, 30, 6585-6589. doi:10.1175/JCLI-D-17-0034.1 [publisher-version]
- Stevens, B. (2017). Clouds unfazed by haze. Nature, 546, 483-484. doi:10.1038/546483a
- Stevens, B., Brogniez, H., Kiemle, C., Lacour, J.-L., Crevoisier, C. & Kiliani, J. (2017). Structure and dynamical influence of water vapor in the lower tropical troposphere. Surveys in Geophysics, 38, 1371-1397. doi:10.1007/s10712-017-9420-8 [publisher-version]
- Stevens, B., Fiedler, S., Kinne, S., Peters, K., Rast, S., Müsse, J., Smith, S. & Mauritsen, T. (2017). MACv2-SP: a parameterization of anthropogenic aerosol optical properties and an associated Twomey effect for use in CMIP6. Geoscientific Model Development, 10, 433-452. doi:10.5194/gmd-10-433-2017 [publisher-version][supplementary-material]
- Stouffer, R., Eyring, V., Meehl, G., Bony, S., Senior, C., Stevens, B. & Taylor, K. (2017). CMIP5 scientific gaps and recommendations for CMIP6. Bulletin of the American Meteorological Society, 98, 95-105. doi:10.1175/BAMS-D-15-00013.1 [publisher-version]
- Trivej, P., Stevens, B. & Phansri, W. (2017). The onset and withdrawal of the rainy season in Eastern Thailand with regard to the flowering of mangosteens and durians. Acta Geobalcanica, 3, 7-16. doi:10.18509/AGB.2017.01 [publisher-version]
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- van Heerwaarden, C., van Stratum, B., Heus, T., Gibbs, J., Fedorovich, E. & Mellado, J.-P. (2017). MicroHH 1.0: a computational fluid dynamics code for direct numerical simulation and large-eddy simulation of atmospheric boundary layer flows. Geoscientific Model Development, 10, 3145-3165. doi:10.5194/gmd-10-3145-2017 [publisher-version]
- van Stratum, B. (2017). The influence of misrepresenting the nocturnal boundary layer on daytime convection in large-eddy simulation. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 187. doi:10.17617/2.2383650 [publisher-version]
- Vial, J., Bony , S., Stevens, B. & Vogel, R. (2017). Mechanisms and model diversity of trade-wind shallow cumulus cloud feedbacks: a review. Surveys in Geophysics, 38(SI), 1331-1353. doi:10.1007/s10712-017-9418-2 [publisher-version]
- Vogel, R. (2017). The influence of precipitation and convective organization on the structure of the trades. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 199. doi:10.17617/2.2503092 [publisher-version]
- Voigt, A., Pincus, R., Stevens, B., Bony, S., Boucher, O., Bellouin, N., Lewinschal, A., Medeiros, B., Wang, Z. & Zhang, H. (2017). Fast and slow shifts of the zonal-mean intertropical convergence zone in response to an idealized anthropogenic aerosol. Journal of Advances in Modeling Earth Systems, 9, 870-892. doi:10.1002/2016MS000902 [publisher-version]
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- Ansorge, C. & Mellado, J.-P. (2016). Analyses of external and global intermittency in the logarithmic layer of Ekman flow. Journal of Fluid Mechanics, 805, 611-635. doi:10.1017/jfm.2016.534
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- Bathiany, S., Notz, D., Mauritsen, T., Rädel, G. & Brovkin, V. (2016). On the mechanism of Arctic winter sea ice collapse. Journal of Climate, 29, 2703-2719. doi:10.1175/JCLI-D-15-0466.1 [publisher-version][supplementary-material]
- Bhattacharya, R. & Stevens, B. (2016). A two Turbulence Kinetic Energy model as a scale-adaptive approach to modeling the planetary boundary layer. Journal of Advances in Modeling Earth Systems, 8, 224-243. doi:10.1002/2015MS000548 [publisher-version]
- Binietoglou, I., Serikov, I., Nicolae, D., Amiridis, V., Belegante, L., Boscornea, A., Brügmann, B., Surós, M., Hellmann, D., Kokkalis, P., Linné, H., Stachlewska, I. & Vajaiac, S.-N. (2016). MULTIPLY: Development of a European HSRL airborne facility. Poster presented at Living Planet Symposium 2016. Prag. 2016-05-09 - 2016-05-13,
- Bittner, M., Schmidt, H., Timmreck, C. & Sienz, F. (2016). Using a large ensemble of simulations to assess the Northern Hemisphere stratospheric dynamical response to tropical volcanic eruptions and its uncertainty. Geophysical Research Letters, 43, 9324-9332. doi:10.1002/2016GL070587 [publisher-version]
- Bittner, M., Timmreck, C., Schmidt, H., Toohey, M. & Krüger , K. (2016). The impact of wave-mean flow interaction on the Northern Hemisphere polar vortex after tropical volcanic eruptions. Journal of Geophysical Research-Atmospheres, 121, 5281-5297. doi:10.1002/2015JD024603 [publisher-version]
- Bony, S., Stevens, B., Coppin, D., Becker, T., Reed, K., Voigt, A. & Medeiros, B. (2016). Thermodynamic control of anvil cloud amount. Proceedings of the National Academy of Sciences of the United States of America, 113, 8927-8932 . doi:10.1073/pnas.1601472113 [publisher-version][publisher-version]
- Casanueva, A., Kotlarski, S., Herrera, S., Fernández, J., Gutiérrez, J., Boberg, F., Colette, A., Christensen, O., Goergen, K., Jacob, D., Keuler, K., Nikulin, G., Teichmann, C. & Vautard, R. (2016). Daily precipitation statistics in a EURO-CORDEX RCM ensemble: added value of raw and bias-corrected high-resolution simulations. Climate Dynamics, 47, 719-737. doi:10.1007/s00382-015-2865-x
- Cerezo-Mota, R., Cavazos, T., Arritt, R., Torres-Alavez, A., Sieck, K., Nikulin, G., Moufouma-Okia, W. & Salinas-Prieto, J. (2016). CORDEX-NA: Factors inducing dry/wet years on the North American Monsoon region. International Journal of Climatology, 36, 824-836. doi:10.1002/joc.4385
- Cioni, G., Malguzzi, P. & Buzzi, A. (2016). Thermal structure and dynamical precursor of a Mediterranean tropical-like cyclone. Quarterly Journal of the Royal Meteorological Society, 142, 1757-1766. doi:10.1002/qj.2773
- Clement, A., Cane, M., Murphy, L., Bellomo, K., Mauritsen, T. & Stevens, B. (2016). Response to Comment on “The Atlantic Multidecadal Oscillation without a role for ocean circulation” (Science, 352, 2016, 1527). Science, 352, 1527 b. doi:10.1126/science.aaf2575
- de Lozar, A. & Muessle, L. (2016). Long-resident droplets at the stratocumulus top. Atmospheric Chemistry and Physics, 16, 6563-6576. doi:10.5194/acp-16-6563-2016 [publisher-version]
- De Roode, S., Sandu, I., van der Dussen, J., Ackerman, A., Blossey, P., Jarecka, D., Lock, A., Siebesma, A. & Stevens, B. (2016). Large-eddy simulations of EUCLIPSE–GASS Lagrangian stratocumulus-to-cumulus transitions: Mean State, turbulence, and decoupling. Journal of the Atmospheric Sciences, 73, 2485-2508. doi:10.1175/JAS-D-15-0215.1 [publisher-version]
- Engelmann, R., Kanitz, T., Baars, H., Heese, B., Althausen, D., Skupin, A., Wandinger, U., Komppula, M., Stachlewska, I., Amiridis, V., Marinou, E., Mattis, I., Linné, H. & Ansmann, A. (2016). The automated multiwavelength Raman polarization and water-vapor lidar PollyXT: The neXT generation. Atmospheric Measurement Techniques, 9, 1767-1784. doi:10.5194/amt-9-1767-2016 [publisher-version]
- Eyring, V., Bony, S., Meehl, G., Senior, C., Stevens, B., Stouffer, R. & Taylor, K. (2016). Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organisation. Geoscientific Model Development, 9, 1937-1958. doi:10.5194/gmd-9-1937-2016 [publisher-version]
- Fiedler, S., Knippertz, P., Woodward, S., Martin, G., Bellouin, N., Ross, A., Heinold, B., Schepanski, K., Birch, C. & Tegen, I. (2016). A process-based evaluation of dust-emitting winds in the CMIP5 simulation of HadGEM2-ES. Climate Dynamics, 46, 1107-1130. doi:10.1007/s00382-015-2635-9 [publisher-version]
- Finger, F., Werner, F., Klingebiel, M., Ehrlich, A., Jäkel, E., Voigt, M., Borrmann, S., Spichtinger, P. & Wendisch, M. (2016). Spectral optical layer properties of cirrus from collocated airborne measurements and simulations. Atmospheric Chemistry and Physics, 16, 7681-7693. doi:10.5194/acp-16-7681-2016 [publisher-version]
- Fläschner, D. (2016). Intermodel spread in global and tropical precipitation changes. Phd Thesis, Hamburg: Universität Hamburg. Berichte zur Erdsystemforschung, 183. doi:10.17617/2.2321127 [publisher-version]
- Fläschner, D., Mauritsen, T. & Stevens, B. (2016). Understanding the intermodel spread in global-mean hydrological sensitivity. Journal of Climate, 29, 801-817. doi:10.1175/JCLI-D-15-0351.1 [publisher-version][publisher-version]
- Gerber, E. & Manzini, E. (2016). The Dynamics and Variability Model Intercomparison Project (DynVarMIP) for CMIP6: Assessing the stratosphere-troposphere system. Geoscientific Model Development, 9, 3413-3425. doi:10.5194/gmd-9-3413-2016 [publisher-version]
- Giorgetta, M., Stevens, B., Dipankar, A. & Adamidis, P. (2016). ICON: Ein neues Modell für die Untersuchung der Rolle kleiner Wolken im globalen Klimasystem. Jahrbuch / Max-Planck-Gesellschaft. [publisher-version]
- Goebbert, J., Gauding, M., Ansorge, C., Hentschel, B., Kuhlen, T. & Pitsch, H. (2016). Direct numerical simulation of fluid turbulence at extreme scale with psOpen. Advances in Parallel Computing, 27, 777-785. doi:10.3233/978-1-61499-621-7-777
- Gottwald, G., Peters, K. & Davies, L. (2016). A data-driven method for the stochastic parametrisation of subgrid-scale tropical convective area fraction. Quarterly Journal of the Royal Meteorological Society, 142, 349-359. doi:10.1002/qj.2655
- Gregory, J., Andrews, T., Good, P., Mauritsen, T. & Forster, P. (2016). Small global-mean cooling due to volcanic radiative forcing. Climate Dynamics, 47, 3979-3991. doi:10.1007/s00382-016-3055-1 [publisher-version]
- Heinze, R., Mironov, D. & Raasch, S. (2016). Analysis of pressure-strain and pressure gradient-scalar covariances in cloud-topped boundary layers: A large-eddy simulation study. Journal of Advances in Modeling Earth Systems, 8, 3-30. doi:10.1002/2015MS000508 [supplementary-material][publisher-version]
- Hohenegger, C. & Stevens, B. (2016). Coupled radiative convective equilibrium simulations with explicit and parameterized convection. Journal of Advances in Modeling Earth Systems, 8, 1468-1482. doi:10.1002/2016MS000666 [publisher-version]
- Huneeus, N., Basart, S., Fiedler, S., Morcrette, J.-J., Benedetti, A., Mulcahy, J., Terradellas, E., Perez Garcia-Pando, C., Pejanovic, G., Nickovic, S., Arsenovic, P., Schulz, M., Cuevas, E., Baldasano, J., Pey, J., Remy, S. & Cvetkovic, B. (2016). Forecasting the North African dust outbreak towards Europe in April 2011: a model intercomparison. Atmospheric Chemistry and Physics, 16, 4967-4986. doi:10.5194/acp-16-4967-2016 [publisher-version][supplementary-material]
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- Brasseur, G., Marsh, D. & Schmidt, H. (2010). Solar variability, climate, and atmospheric photochemistry. In Schrijver, C. (Eds.), Heliophysics: Evolving solar activity and the climates of space and Earth (pp.425-448). Cambridge University Press.
- Brovkin, V., Lorenz, S., Jungclaus, J., Raddatz, T., Timmreck, C., Reick, C., Segschneider, J. & Six, K. (2010). Sensitivity of a coupled climate-carbon cycle model to large volcanic eruptions. Tellus B, 62, 674-681. doi:10.1111/j.1600-0889.2010.00471.x [publisher-version]
- Budich, R., Giorgetta, M., Jungclaus, J., Redler, R. & Reick, C. (2010). The MPI-M Millennium Earth System Model: An Assembling Guide for the COSMOS Configuration. [publisher-version]
- Buelow, K. (2010). Zeitreihenanalyse von regionalen Temperatur- und Niederschlagssimulationen in Deutschland. Phd Thesis, Hamburg: Hamburg University. Berichte zur Erdsystemforschung. doi:10.17617/2.993835 [publisher-version]
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- Cheng , A., Xu, K. & Stevens, B. (2010). Effects of resolution on the simulation of boundary-layer clouds and the partition of kinetic energy to subgrid scales. Journal of Advances in Modeling Earth Systems, 2: Art. #3. doi:10.3894/james.2010.2.3 [publisher-version]
- Croft, B., Lohmann, U., Martin, R., Stier, P., Wurzler, S., Feichter, J., Hoose, C., Heikkilä, U., van Donkelaar, A. & Ferrachat, S. (2010). Influences of in-cloud aerosol scavenging parameterizations on aerosol concentrations and wet deposition in ECHAM5-HAM. Atmospheric Chemistry and Physics, 10, 1511-1543. doi:10.5194/acp-10-1511-2010 [publisher-version]
- Dikty, S., Schmidt, H., Weber, M., Von Savigny, C. & Mlynczak, M. (2010). Daytime ozone and temperature variations in the mesosphere: A comparison between SABER observations and HAMMONIA model. Atmospheric Chemistry and Physics, 10, 8331-8339. doi:10.5194/acp-10-8331-2010 [publisher-version]
- Egri, Á., Horváth, Á., Kriska, G. & Horváth, G. (2010). Optics of sunlit water drops on leaves: Conditions under which sunburn is possible. New Phytologist, 185, 979-987. doi:10.1111/j.1469-8137.2009.03150.x
- Emmons, L., Walters, S., Hess, P., Lamarque, J., Pfister, G., Fillmore, D., Granier, C., Guenther, A., Kinnison, D., Laepple, T., Orlando, J., Tie, X., Tyndall, G., Wiedinmyer, C., Baughcum, S. & Kloster, S. (2010). Description and evaluation of the Model for Ozone and Related chemical Tracers, version 4 (MOZART-4). Geoscientific Model Development, 3, 43-67. doi:doi:10.5194/gmd-3-43-2010 [publisher-version]
- Fischer-Bruns, I., Feichter, J., Kloster, S. & Schneidereit, A. (2010). How present aerosol pollution from North America impacts North Atlantic climate. Tellus Series A-Dynamic Meteorology and Oceanography, 62, 579-589. doi:10.1111/j.1600-0870.2010.00446.x [publisher-version]
- Frueh, B., Feldmann, H., Panitz, H.-J., Schaedler, G., Jacob, D., Lorenz, P. & Keuler, K. (2010). Determination of precipitation return values in complex terrain and their evaluation. Journal of Climate, 23, 2257-2274. doi:10.1175/2009JCLI2685.1 [publisher-version]
- Graf, H.-F., Shirsat, S., Oppenheimer, C., Jarvis, M., Podzun, R. & Jacob, D. (2010). Continental scale Antarctic deposition of sulphur and black carbon from anthropogenic and volcanic sources. Atmospheric Chemistry and Physics, 10, 2457-2465. [publisher-version]
- Haensler, A., Hagemann, S. & Jacob, D. (2010). How will the future climate of the Southern African region might look like; results of a high-resolution regional climate change projection. Nova Acta Leopoldina, NF, 112(Continents under climate change), 183-191.
- Heus, T., van Heerwaarden, C., Jonker, H., Pier Siebesma, A., Axelsen, S., van den Dries, K., Geoffroy, O., Moene, A., Pino, D., de Roode, S. & Vilà-Guerau de Arellano, J. (2010). Formulation of the Dutch Atmospheric Large-Eddy Simulation (DALES) and overview of its applications. Geoscientific Model Development, 3, 415-444. doi:10.5194/gmd-3-415-2010 [publisher-version]
- Hurkmans, R., Terink, W., Uijlenhoet, R., Torfs, P., Jacob, D. & Troch, P. (2010). Changes in streamflow dynamics in the Rhine Basin under three high-resolution regional climate scenarios. Journal of Climate, 23(3), 679-699. doi:10.1175/2009JCLI3066.1 [publisher-version]
- Jacob, D. & Podzun, R. (2010). Global warming below 2°C relative to pre-industrial level: how might climate look like in Europe. Nova Acta Leopoldina, NF, 112(Continents under climate change), 71-76.
- Jungclaus, J., Lorenz, S., Timmreck, C., Reick, C., Brovkin, V., Six, K., Segschneider, J., Giorgetta, M., Crowley, T., Pongratz, J., Krivova, N., Vieira, L., Solanki, S., Klocke, D., Botzet, M., Esch, M., Gayler, V., Haak, H., Raddatz, T., Roeckner, E., Schnur, R., Widmann, H., Claussen, M., Stevens, B. & Marotzke, J. (2010). Climate and carbon-cycle variability over the last millennium. Climate of the Past, 6, 723-737. doi:10.5194/cp-6-723-2010 [publisher-version]
- Kazil, J., Stier, P., Zhang, K., Quaas, J., Kinne, S., O'Donnell, D., Rast, S., Esch, M., Ferrachat, S., Lohmann, U. & Feichter, J. (2010). Aerosol nucleation and its role for clouds and earth's radiative forcing in the aerosol-climate model ECHAM5-HAM. Atmospheric Chemistry and Physics, 10, 10733-10752. doi:10.5194/acp-10-10733-2010 [publisher-version]
- Kloster, S., Dentener, F., Feichter, J., Raes, F., Lohmann, U., Roeckner, E. & Fischer-Bruns, I. (2010). A GCM study of future climate response to aerosol pollution reductions. Climate Dynamics, 1177-1194. doi:10.1007/s00382-009-0573-0 [publisher-version]
- Kokhanovsky, A. & Kinne, S. (2010). Aerosol remote sensing from space. EOS, 91, 3-3. doi:10.1029/2010EO010004 [publisher-version]
- Kotlarski, S., Jacob, D., Podzun, R. & Paul, F. (2010). Representing glaciers in a regional climate model. Climate Dynamics, 34(1), 27-46. doi:DOI 10.1007/s00382-009-0685-6
- Kotlarski, S., Paul, F. & Jacob, D. (2010). Forcing a distributed glacier mass balance model with the regional climate model REMO. Part 1: Climate model evaluation. Journal of Climate, 28, 1589-1606. doi:10.1175/2009JCLI2711.1 [publisher-version]
- Kotlarski, S. & Paul, F. (2010). Forcing a distributed glacier mass balance model with the regional climate model REMO. Part 2: Downscaling strategy and results for two swiss glaciers. Journal of Climate, 28, 1607-1620. doi:10.1175/2009JCLI3345.1 [publisher-version]
- Kowalewski, S. & Peters, G. (2010). Analysis of Z-R relations based on LDR signatures within the melting layer. Journal of Atmospheric and Oceanic Technology, 27, 1555-1561. doi:10.1175/2010JTECHA1363.1 [publisher-version]
- Kuhlmann, J. & Quaas, J. (2010). How can aerosols affect the Asian summer monsoon ? Assessment during three consecutive pre-monsoon seasons from CALIPSO satellite data.. Atmospheric Chemistry and Physics, 10(10), 4673-4688. [publisher-version]
- Kunze, M., Braesicke, P., Langematz, U., Stiller, G., Bekki, S., Bruehl, C., Chipperfield, M., Dameris, M., Garcia, R. & Giorgetta, M. (2010). Influences of the Indian Summer Monsoon on water vapor and ozone concentrations in the UTLS as simulated by chemistry-climate models. Journal of Climate, 23, 3525-3544. doi:10.1175/2010JCLI3280.1 [publisher-version]
- Larsen, X., Mann, J., Berg, J., Goettel, H. & Jacob, D. (2010). Wind climate from the regional climate model REMO. Wind Energy, 13, 279-296. doi:10.1002/we.337 [publisher-version]
- Lohmann, U., Rotstayn, L., Storelvmo, T., Jones, A., Menon, S., Quaas, J., Ekman, A., Koch, D. & Ruedy, R. (2010). Total aerosol effect: forcing or radiative flux perturbation. Atmospheric Chemistry and Physics, 10, 3235-3246. [publisher-version]
- Lorenz, P. & Jacob, D. (2010). Validation of temperature trends in the ENSEMBLES regional climate model runs driven by ERA40. Climate Research, 44, 167-177. doi:10.3354/cr00973 [publisher-version]
- Majda, A., Stevens, B. & Klein, R. (2010). Mathematical theory and modelling in atmosphere-ocean-science. In Oberwolfach Report; 34/2010 Mathematisches Forschungsinstitut Oberwolfach. [publisher-version]
- Manzini, E., Hardiman, S., Osprey, M. & Scaife, A. (2010). Stratosphere-resolving models in CMP5. Exchanges: Newsletter of the Climate Variability and Predictability Programme (CLIVAR), 56, 29-31. [publisher-version]
- Medeiros, B., Nuijens, L., Antoniazzi, C. & Stevens, B. (2010). Low-latitude boundary layer clouds as seen by CALIPSO. Journal of Geophysical Research - Atmospheres, 115: D23207. doi:10.1029/2010JD014437 [publisher-version]
- Meier, C. (2010). Wettkampf mit Wind und Wolken. MaxPlanckForschung, 4/10, 80-87. [publisher-version]
- Meier, C. (2010). Wasser mit nebulöser Wirkung. MaxPlanckForschung, 1/10, 17-23. [publisher-version]
- Mellado, J., Stevens, B., Schmidt, H. & Peters, N. (2010). Two-fluid formulation of the cloud-top mixing layer for direct numerical simulation. Theoretical and Computational Fluid Dynamics, 24, 511-536. doi:10.1007/s00162-010-0182-x [publisher-version]
- Mellado, J., Stevens, B., Schmidt, H. & Peters, N. (2010). Probability density functions in the cloud-top mixing layer. New Journal of Physics, 12: 085010. doi:10.1088/1367-2630/12/8/085010 [publisher-version]
- Mellado, J.-P., Stevens, B., Schmidt, H. & Peters, N. (2010). Investigation of latent heat effects at the stratocumulus top using direct numerical simulations. In Oberwolfach Report, 7 (34), 2010 (pp.2061-2063). Mathematisches Forschungsinstitut Oberwolfach. [publisher-version]
- Mellado, J.-P. (2010). The evaporatively driven cloud-top mixing layer. Journal of Fluid Mechanics, 660, 5-36. doi:10.1017/S0022112010002831
- Menéndez, C., de Castro, M., Boulanger, J.-P., D'Onofrio, A., Sanchez, E., Sörensson, A., Blazquez, J., Elizalde, A., Jacob, D., Le Treut, H., Li, Z., Núñez, M., Pessacg, N., Pfeiffer, S., Rojas, M., Rolla, A., Samuelsson, P., Solman, S. & Teichmann, C. (2010). Downscaling extreme month-long anomalies in southern South America. Climatic Change, 98, 379-403. doi:10.1007/s10584-009-9739-3 [publisher-version]
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- O'Donnell, D. (2010). Towards the assessment of the climate effects of secondary organic aerosols. Phd Thesis, Hamburg: Hamburg University. Berichte zur Erdsystemforschung, 77. doi:10.17617/2.993722 [publisher-version]
- Ordóñez, C., Elguindi, N., Stein, O., Huijnen, V., Flemming, J., Inness, A., Flentje, H., Katragkou, E., Moinat, P., Peuch, V.-H., Segers, A., Thouret, V., Athier, G., Van Weele, M., Zerefos, C., Cammas, J.-P. & Schultz, M. (2010). Global model simulations of air pollution during the 2003 European heat wave. Atmospheric Chemistry and Physics, 10, 789-815. [publisher-version]
- Peña-Ortiz, C., Schmidt, H., Giorgetta, M. & Keller, M. (2010). QBO modulation of the semiannual oscillation in MAECHAM5 and HAMMONIA. Journal of Geophysical Research - Atmospheres, 115: D21106. doi:10.1029/2010JD013898 [publisher-version]
- Petersen, A., Warneke, T., Frankenberg, C., Bergamaschi, P., Gerbig, C., Notholt, J., Buchwitz, M., Schneising, O. & Schrems, O. (2010). First ground-based FTIR observations of methane in the inner tropics over several years. Atmospheric Chemistry and Physics, 10, 7231-7239. doi:10.5194/acp-10-7231-2010 [publisher-version][supplementary-material]
- Quaas, J., Stevens, B., Stier, P. & Lohmann, U. (2010). Interpreting the cloud cover - aerosol optical depth relationship found in satellite data using the general circulation model. Atmospheric Chemistry and Physics, 10, 6129-6135. doi:10.5194/acp-10-6129-2010 [publisher-version]
- Salzmann, M., Ming, Y., Golaz, J.-C., Ginoux, P., Morrison, H., Gettelman, A., Kr̈amer, M. & Donner, L. (2010). Two-moment bulk stratiform cloud microphysics in the GFDL AM3 GCM: Description, evaluation, and sensitivity tests. Atmospheric Chemistry and Physics, 10, 8037-8064. doi:10.5194/acp-10-8037-2010 [publisher-version]
- Sandu, I., Stevens, B. & Pincus, R. (2010). On the transitions in marine boundary layer cloudiness. Atmospheric Chemistry and Physics, 10, 2377-2391. [publisher-version]
- Schmidt, H., Brasseur, G. & Giorgetta, M. (2010). Solar cycle signal in a general circulation and chemistry model with internally generated quasi-biennial oscillation. Journal of Geophysical Research: Atmospheres, 115: D00I14. doi:10.1029/2009JD012542 [publisher-version]
- Seethala, C. & Horváth, Á. (2010). Global assessment of AMSR-E and MODIS cloud liquid water path retrievals in warm oceanic clouds. Journal of Geophysical Research: Atmospheres, 115: D13202. doi:10.1029/2009JD012662 [publisher-version]
- Seifert, A. & Stevens, B. (2010). Microphysical scaling relations in a kinematic model of isolated shallow cumulus clouds. Journal of the Atmospheric Sciences, 67, 1575-1590. doi:10.1175/2009JAS3319.1 [publisher-version]
- Seifert, A., Nuijens, L. & Stevens, B. (2010). Turbulence effects on warm-rain autoconversion in precipitating shallow convection. Quarterly Journal of the Royal Meteorological Society, 136, 1753-1762. doi:10.1002/qj.684
- Seiffert, R. & von Storch, J.-S. (2010). A stochastic analysis of the impact of small-scale fluctuations on the tropospheric temperature response to CO2 doubling. Journal of Climate, 23, 2307-2319. doi:10.1175/2009JCLI3043.1 [publisher-version]
- Stechmann, S. & Stevens, B. (2010). Multiscale models for cumulus cloud dynamics. Journal of the Atmospheric Sciences, 67, 3269-3285. doi:10.1175/2010JAS3380.1 [publisher-version]
- Stevens, B. (2010). Cloud-top entrainment instability. Journal of Fluid Mechanics, 660, 1-4. doi:10.1017/S0022112010003575
- Teichmann, C. (2010). Climate and air pollution modelling in South America with focus on megacities. Phd Thesis, Hamburg: Hamburg University. Berichte zur Erdsystemforschung, 76. doi:10.17617/2.993870 [publisher-version]
- Thomas, M., Suntharalingam, P., Pozzoli, L., Rast, S., Devasthale, A., Kloster, S., Feichter, J. & Lenton, T. (2010). Quantification of DMS aerosol-cloud-climate interactions using the ECHAM5-HAMMOZ model in a current climate scenario. Atmospheric Chemistry and Physics, 10, 7425-7438. doi:10.5194/acp-10-7425-2010 [publisher-version][publisher-version]
- Timmreck, C., Graf, H.-F., Lorenz, S., Niemeier, U., Zanchettin, D., Matei, D., Jungclaus, J. & Crowley, T. (2010). Aerosol size confines climate response to volcanic super-eruptions. Geophysical Research Letters, 37: L24705. doi:10.1029/2010GL045464. [publisher-version]
- Tomassini, L., Knutti, R., Plattner, G.-K., van Vuuren, D., Stocker, T., Howarth, R. & Borsuk, M. (2010). Uncertainty and risk in climate projections for the 21st century: comparing mitigation to non-intervention scenarios. Climatic Change, 103, 399-422. doi:10.1007/s10584-009-9763-3 [publisher-version]
- Trivej, P. & Stevens, B. (2010). The echo size distribution of precipitating shallow cumuli. Journal of the Atmospheric Sciences, 67, 788-804. doi:10.1175/2009JAS3178.1 [publisher-version]
- Zhang, K., Wan, H., Wang, B., Zhang, M., Feichter, J. & Liu, X. (2010). Tropospheric aerosol size distributions simulated by three online global aerosol models using the M7 microphysics module. Atmospheric Chemistry and Physics, 10, 6409-6434. doi:10.5194/acp-10-6409-2010 [publisher-version]
- Ackerman, A., vanZanten, M., Stevens, B., Savic-Jovcic, V., Bretherton, C., Chlond, A., Golaz, J.-C., Jiang, H., Khairoutdinov, M., Krueger, S., Lewellen, D., Lock, A., Moeng, C.-M., Nakamura, K., Petters, M., Snider, J., Weinbrecht, S. & Zulauf, M. (2009). Large-eddy simulations of a drizzling, stratocumulus-topped marine boundary layer. Monthly Weather Review, 137, 1083-1110. doi:10.1175/2008MWR2582.1 [publisher-version]
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- Benedetti, A., Morcrette, J., Boucher, O., Dethof, A., Engelen, R., Fisher, M., Flentje, H., Huneeus, N., Jones, L., Kaiser, J., Kinne, S., Mangold, A., Razinger, M., Simmons, A. & Suttie, M. (2009). Aerosol analysis and forecast in the European Centre for Medium-Range Weather Forecasts Integrated Forecast System: 2. Data assimilation. Journal of Geophysical Research: Atmospheres, 114. doi:10.1029/2008JD011235 [publisher-version]
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- Gregory, J., Church, J., Boer, G., Dixon, K., Flato, G., Jackett, D., Lowe, J., O'Farrell, S., Roeckner, E., Russell, G., Stouffer, R. & Winton, M. (2001). Comparison of results from several AOGCMs for global and regional sea-level change 1900-2100. Climate Dynamics, 18, 225-240. doi:10.1007/s003820100180
- Hauglustaine, D., Emmons, L., Newchurch, J., Brasseur, G., Takao, T., Matsubara, K., Johnson, J., Ridley, B., Stith, J. & Dye, J. (2001). On the role of lightning NO(x) in the formation of tropospheric ozone plumes: A global model perspective. Journal of Atmospheric Chemistry, 38, 277-294. doi:10.1023/A:1006452309388
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- Lee-Taylor, J., Brasseur, G. & Yokouchi, Y. (2001). A preliminary three-dimensional global model study of atmospheric methyl chloride distributions. Journal of Geophysical Research-Atmospheres, 106, 34221-34233. doi:10.1029/2001JD900209 [publisher-version]
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- Livesey, N., Waters, J., Khosravi, J., Brasseur, G., Tyndall, G. & Read, W. (2001). Stratospheric CH3CN from the UARS microwave limb sounder. Geophysical Research Letters, 28, 779-782. doi:10.1029/2000GL012144 [publisher-version]
- Marsh, D., Smith, A., Brasseur, G., Kaufmann, M. & Grossmann, K. (2001). The existence of a tertiary ozone maximum in the high-latitude middle mesosphere. Geophysical Research Letters, 28, 4531-4534. doi:10.1029/2001GL013791 [publisher-version]
- Reichert, B., Bengtsson, L. & Oerlemans, J. (2001). Midlatitude forcing mechanisms for glacier mass balance investigated using general circulation models. Journal of Climate, 3767-3784. doi:10.1175/1520-0442(2001)014<3767:MFMFGM>2.0.CO;2 [publisher-version]
- Santer, B., Wigley, T., Doutriaux, C., Boyle, J., Hansen, J., Jones, P., Meehl, G., Roeckner, E., Sengupta, S. & Taylor, K. (2001). Accounting for the effects of volcanoes and ENSO in comparisons of modeled and observed temperature trends. Journal of Geophysical Research: Atmospheres, 106, 28033-28059. doi:10.1029/2000JD000189 [publisher-version]
- Schnitzler, K.-G., Knorr, W., Latif, M., Bader, J. & Zeng, N. (2001). Vegetation feedback on Sahelian rainfall variability in a coupled climate land-vegetation model. Report / Max-Planck-Institut für Meteorologie, 329. [publisher-version]
- Tie, X., Zhang, R., Brasseur, G., Emmons, L. & Lei, W. (2001). Effects of lightning on reactive nitrogen and nitrogen reservoir species in the troposphere. Journal of Geophysical Research-Atmospheres, 106, 3167-3178. doi:10.1029/2000JD900565 [publisher-version]
- Xu, J., Smith, A. & Brasseur, G. (2001). Conditions for the photochemical destabilization of gravity waves in the mesopause region. Journal of Atmospheric and Solar-Terrestrial Physics, 63, 1821-1829. doi:10.1016/S1364-6826(01)00061-X
- Yang, P. & Brasseur, G. (2001). The nonlinear response of stratospheric ozone to NOx and ClOx perturbations. Gophysical Research Letters, 28, 717-720. doi:10.1029/2000GL011428 [publisher-version]
- Arpe, K., Bengtsson, L., Golitsyn, G., Mokhov, I., Semenov, V. & Sporyshev, P. (2000). Connection between Caspian Sea level variability and ENSO. Geophysical Research Letters, 27, 2693-2696. doi:10.1029/1999GL002374 [publisher-version]
- Beig, G. & Brasseur, G. (2000). Model of tropospheric ion composition: A first attempt. Journal of Geophysical Research-Atmospheres, 105, 22671-22684. doi:10.1029/2000JD900119 [publisher-version]
- Bengtsson, L. & Reichert, B. (2000). Globaler Klimawandel und natürliche Klimavariabilität: Welche Ursachen haben sie?. In Wolfrum, J., Wittig, S. & Freerk, M. (Eds.), Energie und Umwelt: Wo liegen optimale Lösungen? (pp.27-57). Berlin, Heidelberg: Springer .
- Emmons, L., Hauglustaine, D., Muller, J., Carroll, M., Brasseur, G., Brunner, D., Staehelin, D., Thouret, V. & Marenco, A. (2000). Data composites of airborne observations of tropospheric ozone and its precursors. Journal of Geophysical Research-Atmospheres, 105, 20497-20538. doi:10.1029/2000JD900232 [publisher-version]
- Granier, C., Pétron, G., Müller, J. & Brasseur, G. (2000). The impact of natural and anthropogenic hydrocarbons on the tropospheric budget of carbon monoxide. Atmospheric Environment, 34, 5255-5270. doi:10.1016/S1352-2310(00)00299-5
- Hagedorn, R., Lehmann, A. & Jacob, D. (2000). A coupled high resolution atmosphere-ocean model for the BALTEX region. Meteorologische Zeitschrift, 9, 7-20. doi:10.1127/metz/9/2000/7
- Hu, Z.-Z., Latif, M., Roeckner, E. & Bengtsson, L. (2000). Intensified Asian summer monsoon and its variability in a coupled model forced by increasing greenhouse gas concentrations. Geophysical Research Letters, 27, 2681-2684. doi:10.1029/2000GL011550 [publisher-version]
- Khattatov, B., Lamarque, J., Lyjak, L., Menard, R., Levelt, P., Tie, X., Brasseur, G. & Gille, J. (2000). Assimilation of satellite observations of long-lived chemical species in global chemistry transport models. Journal of Geophysical Research-Atmospheres, 105, 29135-29144. doi:10.1029/2000JD900466 [publisher-version]
- Latif, M., Roeckner, E., Mikolajewicz, U. & Voss, R. (2000). Tropical stabilization of the thermohaline circulation in a greenhouse warming simulation. Journal of Climate, 13, 1809-1813. doi: 10.1175/1520-0442(2000)013<1809:L>2.0.CO;2 [publisher-version]
- Mauzerall, D., Narita, D., Akimoto, H., Horowitz, L., Walters, S., Hauglustaine, D. & Brasseur, G. (2000). Seasonal characteristics of tropospheric ozone production and mixing ratios over East Asia: A global three-dimensional chemical transport model analysis. Journal of Geophysical Research-Atmospheres, 105, 17895-17910. doi:10.1029/2000JD900087 [publisher-version]
- Riese, M., Kull, V., Tie, X., Brasseur, G., Offermann, D., Lehmacher, G. & Franzen, A. (2000). Modeling of nitrogen species measured by CRISTA. Geophysical Research Letters, 27, 2221-2224. doi:10.1029/1999GL011136 [publisher-version]
- Xu, J., Smith, A. & Brasseur, G. (2000). The effects of gravity waves on distributions of chemically active constituents in the mesopause region. Journal of Geophysical Research-Atmospheres, 105, 26593-26602. doi:10.1029/2000JD900446 [publisher-version]
- Bengtsson, L. (1999). From short-range barotropic modelling to extended-range global weather prediction: A 40-year perspective. Tellus, Series A: Dynamic Meteorology and Oceanography, 51, 13-32. doi:10.1034/j.1600-0870.1999.t01-1-00003.x [publisher-version]
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- Delecluse, P., Davey, M., Kitamura, Y., Philander, S., Suarez, M. & Bengtsson, L. (1998). Coupled general circulation modeling of the tropical Pacific. Journal of Geophysical Research: Oceans, 103, 14357-14373. doi:10.1029/97jc02546 [publisher-version]
- Loth , B. & Graf, H. (1998). Modeling the snow cover in climate studies - 2. The sensitivity to internal snow parameters and interface processes. Journal of Geophysical Research: Atmospheres, 103, 11329-11340. doi:10.1029/97JD01412 [publisher-version]
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