9) Olonscheck D., A. Schurer, L. Lücke, und Gabriele Hegerl (2021), "Regional temperature variability is projected to emerge from its natural range", unter Begutachtung

8) Milinski, S., N. Maher, und D. Olonscheck (2020), "How large does a large ensemble need to be?", Earth Syst. Dynam., 11, 885–901, doi:10.5194/esd-11-885-2020

7) Keil P., T. Mauritsen, J. Jungclaus, C. Hedemann, D. Olonscheck, und R. Ghosh (2020), "Multiple Drivers of the North Atlantic Warming Hole", Nat. Climate Change, 10, 667671, doi:10.1038/s41558-020-0819-8

6) Olonscheck, D., M. Rugenstein, und J. Marotzke (2020), "Broad consistency between observed and simulated trends in sea surface temperature patterns", Geophys. Res. Lett. 47, 1-10, doi:10.1029/2019GL086773

5) Li Y., D. Thompson, und D. Olonscheck (2020), "A basic effect of cloud radiative effects on tropical sea-surface temperature variability",  J. Climate 33, 4333-4346, doi:10.1175/JCLI-D-19-0298.1

4) Maher N., S. Milinski, L. Suarez-Gutierrez, M. Botzet, L. Kornblueh, Y. Takano, J. Kröger, R. Ghosh, C. Hedemann, C. Li, H. Li, E. Manzini, D. Notz, D. Putrasahan, L. Boysen, M. Claussen, T. Ilyina, D. Olonscheck, T. Raddatz, B. Stevens, und J. Marotzke (2019), "The Max Planck Institute Grand Ensemble – Enabling the Exploration of Climate System Variability", J. Adv. Model. Earth Syst. 11, 2050-2069, doi:10.1029/2019MS001639

3) Olonscheck D., T. Mauritsen, und D. Notz (2019), "Arctic sea-ice variability is primarily driven by atmospheric temperature fluctuations", Nat. Geoscience 12, 430-434, doi:10.1038/s41561-019-0363-1

2) Olonscheck, D., und D. Notz (2017), "Consistently Estimating Internal Climate Variability from Climate Model Simulations", J. Climate 30, 9555-9573, doi:10.1175/JCLI-D-16-0428.1

1) Olonscheck, D., M. Hofmann, B. Worm, und H. J. Schellnhuber (2013), "Decomposing the effects of ocean warming on chlorophyll a concentrations into physically and biologically driven contributions", Environ. Res. Lett. 8, 014043, doi:10.1088/1748-9326/8/1/014043


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