Herman, Rebecca Jean, Biasutti, Michela, Kushnir, Yochanan , 2023: Drivers of low-frequency Sahel precipitation variability: comparing CMIP5 and CMIP6 ensemble means with observations. Climate Dynamics, 61, 4449-4470, doi:10.1007/s00382-023-06755-1.

Strack, Julius, Smith, Martin J. , 2023: Predicted changes to the rate of human decomposition due to climate change during the 21st century. Other, 7, 100321, doi:10.1016/j.fsir.2023.100321.

Anne L. Morée, Thomas L. Frölicher, Tayler M. Clarke, William W. L. Cheung , 2023: Impact of deoxygenation and warming on global marine species in the 21st century. Biogeosciences, doi:10.5194/bg-20-2425-2023.

Roemer, Florian E., Buehler, Stefan A., Brath, Manfred, Kluft, Lukas, John, Viju O. , 2023: Direct observation of Earth’s spectral long-wave feedback parameter. Nature Geoscience, 16, 416-421, doi:10.1038/s41561-023-01175-6.

Hayashi, Michiya, Shiogama H., Ogura T. , 2022: The contribution of climate change to increasing extreme ocean warming around Japan. Geophysical Research Letters, 49, e2022GL100785, doi:10.1029/2022gl100785.

Holtanová, Eva, Belda, Michal, Halenka, Tomáš , 2022: Projected changes in mean annual cycle of temperature and precipitation over the Czech Republic: Comparison of CMIP5 and CMIP6. Frontiers in Earth Science, 10, doi:10.3389/feart.2022.1018661.

Chan, Pak Wah, Catto, Jennifer L., Collins, Matthew , 2022: Heatwave–blocking relation change likely dominates over decrease in blocking frequency under global warming. npj Climate and Atmospheric Science, 5, doi:10.1038/s41612-022-00290-2.

Koshiro, Tsuyoshi, Kawai, Hideaki, Noda, Akira T. , 2022: Estimated cloud-top entrainment index explains positive low-cloud-cover feedback. Proceedings of the National Academy of Sciences, 119, doi:10.1073/pnas.2200635119.

Hayashi, Michiya, Shiogama, Hideo , 2022: Assessment of CMIP6-based future climate projections selected for impact studies in Japan. SOLA, 18, 96-103, doi:10.2151/sola.2022-016.

Hua, Wenjian, Dai, Aiguo, Chen, Haishan , 2022: Little Influence of Asian Anthropogenic Aerosols on Summer Temperature in Central East Asia Since 1960. Geophysical Research Letters, 49, doi:10.1029/2022gl097946.

Zhang, Jie, Furtado, Kalli, Turnock, Steven T., Mulcahy, Jane P., Wilcox, Laura J., Booth, Ben B., Sexton, David, Wu, Tongwen, Zhang, Fang, Liu, Qianxia , 2021: The role of anthropogenic aerosols in the anomalous cooling from 1960 to 1990 in the CMIP6 Earth system models. Atmospheric Chemistry and Physics, 21, 18609-18627, doi:10.5194/acp-21-18609-2021.

Lalande, Mickaël, Ménégoz, Martin, Krinner, Gerhard, Naegeli, Kathrin, Wunderle, Stefan , 2021: Climate change in the High Mountain Asia in CMIP6. Earth System Dynamics, 12, 1061-1098, doi:10.5194/esd-12-1061-2021.

Palmer, T E, Booth, B B B, McSweeney, C F , 2021: How does the CMIP6 ensemble change the picture for European climate projections?. Environmental Research Letters, 16, 094042, doi:10.1088/1748-9326/ac1ed9.

Hua, Wenjian, Qin, Minhua, Dai, Aiguo, Zhou, Liming, Chen, Haishan, Zhang, Wanxin , 2021: Reconciling Human and Natural Drivers of the Tripole Pattern of Multidecadal Summer Temperature Variations Over Eurasia. Geophysical Research Letters, 48, doi:10.1029/2021gl093971.

Kajtar, Jules B., Santoso, Agus, Collins, Matthew, Taschetto, Andréa S., England, Matthew H., Frankcombe, Leela M. , 2021: CMIP5 Intermodel Relationships in the Baseline Southern Ocean Climate System and With Future Projections. Earth's Future, 9, doi:10.1029/2020ef001873.

McBride, Laura A., Hope, Austin P., Canty, Timothy P., Bennett, Brian F., Tribett, Walter R., Salawitch, Ross J. , 2021: Comparison of CMIP6 historical climate simulations and future projected warming to an empirical model of global climate. Earth System Dynamics, 12, 545-579, doi:10.5194/esd-12-545-2021.

Koch, Alexander, Hubau, Wannes, Lewis, Simon L. , 2021: Earth System Models Are Not Capturing Present‐Day Tropical Forest Carbon Dynamics. Other, 9, doi:10.1029/2020ef001874.

Melnikova, I., Boucher, O., Cadule, P., Ciais, P., Gasser, T., Quilcaille, Y., Shiogama, H., Tachiiri, K., Yokohata, T., Tanaka, K. , 2021: Carbon Cycle Response to Temperature Overshoot Beyond 2°C: An Analysis of CMIP6 Models. Other, 9, doi:10.1029/2020ef001967.

Watson-Parris, D. , 2021: Machine learning for weather and climate are worlds apart. Other, 379, 20200098, doi:10.1098/rsta.2020.0098.

Gillett, Nathan P., Kirchmeier-Young, Megan, Ribes, Aurélien, Shiogama, Hideo, Hegerl, Gabriele C., Knutti, Reto, Gastineau, Guillaume, John, Jasmin G., Li, Lijuan, Nazarenko, Larissa, Rosenbloom, Nan, Seland, Øyvind, Wu, Tongwen, Yukimoto, Seiji, Ziehn, Tilo , 2021: Constraining human contributions to observed warming since the pre-industrial period. Nature Climate Change, 11, 207-212, doi:10.1038/s41558-020-00965-9.

Pak, Gyundo, Noh, Yign, Lee, Myong-In, Yeh, Sang-Wook, Kim, Daehyun, Kim, Sang-Yeob, Lee, Joon-Lee, Lee, Ho Jin, Hyun, Seung-Hwon, Lee, Kwang-Yeon, Lee, Jae-Hak, Park, Young-Gyu, Jin, Hyunkeun, Park, Hyukmin, Kim, Young Ho , 2021: Korea Institute of Ocean Science and Technology Earth System Model and Its Simulation Characteristics. Ocean Science Journal, 56, 18-45, doi:10.1007/s12601-021-00001-7.

Zhang, Jie, Wu, Tongwen, Zhang, Fang, Furtado, Kalli, Xin, Xiaoge, Shi, Xueli, Li, Jianglong, Chu, Min, Zhang, Li, Liu, Qianxia, Yan, Jinghui, Wei, Min, Ma, Qiang , 2021: BCC-ESM1 Model Datasets for the CMIP6 Aerosol Chemistry Model Intercomparison Project (AerChemMIP). Advances in Atmospheric Sciences, 38, 317-328, doi:10.1007/s00376-020-0151-2.

Ribes, Aurélien, Qasmi, Saïd, Gillett, Nathan P. , 2021: Making climate projections conditional on historical observations. Science Advances, 7, eabc0671, doi:10.1126/sciadv.abc0671.

van Noije, Twan, Bergman, Tommi, Le Sager, Philippe, O'Donnell, Declan, Makkonen, Risto, Gonçalves-Ageitos, María, Döscher, Ralf, Fladrich, Uwe, von Hardenberg, Jost, Keskinen, Jukka-Pekka, Korhonen, Hannele, Laakso, Anton, Myriokefalitakis, Stelios, Ollinaho, Pirkka, Pérez García-Pando, Carlos, Reerink, Thomas, Schrödner, Roland, Wyser, Klaus, Yang, Shuting , 2020: EC-Earth3-AerChem, a global climate model with interactive aerosolsand atmospheric chemistry participating in CMIP6. Geoscientific Model Development, doi:10.5194/gmd-2020-413.

Douville, Hervé, Decharme, B., Delire, C., Colin, J., Joetzjer, E., Roehrig, R., Saint-Martin, D., Oudar, T., Stchepounoff, R., Voldoire, A. , 2020: Drivers of the enhanced decline of land near-surface relative humidity to abrupt 4xCO2 in CNRM-CM6-1. Climate Dynamics, 55, 1613-1629, doi:10.1007/s00382-020-05351-x.

Dunne, John P., Winton, Michael, Bacmeister, Julio, Danabasoglu, Gokhan, Gettelman, Andrew, Golaz, Jean‐Christophe, Hannay, Cecile, Schmidt, Gavin A., Krasting, John P., Leung, L. Ruby, Nazarenko, Larissa, Sentman, Lori T., Stouffer, Ronald J., Wolfe, Jonathan D. , 2020: Comparison of Equilibrium Climate Sensitivity Estimates From Slab Ocean, 150‐Year, and Longer Simulations. Geophysical Research Letters, 47, doi:10.1029/2020gl088852.

Shi, Xueli, Chen, Xiaolong, Dai, Yunwei, Hu, Guoquan, Rong, Xinyao, Xin, Yufei, Chen, Haoming, Su, Jingzhi , 2020: Climate Sensitivity and Feedbacks of BCC-CSM to Idealized CO2 Forcing from CMIP5 to CMIP6. Other, 34, 865-878, doi:10.1007/s13351-020-9204-9.

DeRepentigny, Patricia, Jahn, Alexandra, Holland, Marika M., Smith, Abigail , 2020: Arctic Sea Ice in Two Configurations of the CESM2 During the 20th and 21st Centuries. Journal of Geophysical Research: Oceans, 125, e2020JC016133, doi:10.1029/2020jc016133.

Cannon, Alex J , 2020: Reductions in daily continental-scale atmospheric circulation biases between generations of global climate models: CMIP5 to CMIP6. Environmental Research Letters, 15, 064006, doi:10.1088/1748-9326/ab7e4f.

Tsutsui, Junichi , 2020: Diagnosing Transient Response to CO 2 Forcing in Coupled Atmosphere‐Ocean Model Experiments Using a Climate Model Emulator. Geophysical Research Letters, 47, doi:10.1029/2019gl085844.