Causes of higher climate sensitivity in CMIP6 models MD Zelinka, TA Myers, DT McCoy, S Po‐Chedley, PM Caldwell, P Ceppi, ... Geophysical Research Letters 47, 2020 | 1250 | 2020 |
Observational evidence that enhanced subsidence reduces subtropical marine boundary layer cloudiness TA Myers, JR Norris Journal of Climate 26 (19), 7507-7524, 2013 | 183 | 2013 |
Observational constraints on low cloud feedback reduce uncertainty of climate sensitivity TA Myers, RC Scott, MD Zelinka, SA Klein, JR Norris, PM Caldwell Nature Climate Change 11 (6), 501-507, 2021 | 148 | 2021 |
Reducing the uncertainty in subtropical cloud feedback TA Myers, JR Norris Geophysical Research Letters 43, 2016 | 106 | 2016 |
On the relationships between subtropical clouds and meteorology in observations and CMIP3 and CMIP5 models TA Myers, JR Norris Journal of Climate 28 (8), 2945–2967, 2015 | 81 | 2015 |
Observed Sensitivity of Low-Cloud Radiative Effects to Meteorological Perturbations over the Global Oceans RC Scott, TA Myers, JR Norris, MD Zelinka, SA Klein, M Sun, DR Doelling Journal of Climate 33 (18), 7717-7734, 2020 | 77 | 2020 |
Cloud feedback key to marine heatwave off Baja California TA Myers, CR Mechoso, GV Cesana, MJ DeFlorio, DE Waliser Geophysical Research Letters 45 (9), 4345-4352, 2018 | 60 | 2018 |
Can reducing the incoming energy flux over the Southern Ocean in a CGCM improve its simulation of tropical climate? CR Mechoso, T Losada, S Koseki, E Mohino‐Harris, N Keenlyside, ... Geophysical Research Letters 43 (20), 2016 | 56 | 2016 |
Evaluating Climate Models’ Cloud Feedbacks Against Expert Judgment MD Zelinka, SA Klein, Y Qin, TA Myers Journal of Geophysical Research: Atmospheres 127 (2), e2021JD035198, 2022 | 54 | 2022 |
How Has Subtropical Stratocumulus and Associated Meteorology Changed since the 1980s? C Seethala, JR Norris, TA Myers Journal of Climate 28 (21), 8396–8410, 2015 | 50 | 2015 |
Coupling between marine boundary layer clouds and summer-to-summer sea surface temperature variability over the North Atlantic and Pacific TA Myers, CR Mechoso, MJ DeFlorio Climate Dynamics 50 (3-4), 955-969, 2018 | 22 | 2018 |
Mesoscale convective systems over the Amazon basin: The GoAmazon2014/5 program A Rehbein, T Ambrizzi, CR Mechoso, SAI Espinosa, TA Myers International Journal of Climatology 39 (15), 5599-5618, 2019 | 17 | 2019 |
Attribution of Observed Recent Decrease in Low Clouds Over the Northeastern Pacific to Cloud‐Controlling Factors H Andersen, J Cermak, L Zipfel, TA Myers Geophysical Research Letters 49 (3), e2021GL096498, 2022 | 16 | 2022 |
Importance of positive cloud feedback for tropical Atlantic interhemispheric climate variability TA Myers, CR Mechoso, MJ DeFlorio Climate Dynamics 51, 1707-1717, 2018 | 15 | 2018 |
Extratropical shortwave cloud feedbacks in the context of the global circulation and hydrological cycle DT McCoy, P Field, ME Frazer, MD Zelinka, GS Elsaesser, J Mülmenstädt, ... Geophysical Research Letters 49 (8), e2021GL097154, 2022 | 13 | 2022 |
Impact of seasonal snow‐cover change on the observed and simulated state of the atmospheric boundary layer in a high‐altitude mountain valley B Adler, J Wilczak, L Bianco, L Bariteau, CJ Cox, G de Boer, I Djalalova, ... Journal of Geophysical Research: Atmospheres, e2023JD038497, 2023 | 8 | 2023 |
Atmosphere–Ocean Interactions P Chang, I Richter, H Dijkstra, TA Wieners, Claudia, Myers Interacting Climates of Ocean Basins: Observations, Mechanisms …, 2021 | 7 | 2021 |
Relative contributions of atmospheric, oceanic, and coupled processes to North Pacific and North Atlantic variability TA Myers, CR Mechoso Geophysical Research Letters 47 (5), e2019GL086321, 2020 | 7 | 2020 |
Correlation Between Cloud Adjustments and Cloud Feedbacks Responsible for Larger Range of Climate Sensitivities in CMIP6 NJ Lutsko, MT Luongo, CJ Wall, TA Myers Journal of Geophysical Research: Atmospheres 127 (23), e2022JD037486, 2022 | 5 | 2022 |
Observational constraints on the cloud feedback pattern effect TA Myers, MD Zelinka, SA Klein Journal of Climate 36 (18), 6533-6545, 2023 | 4 | 2023 |