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A stratospheric pathway linking a colder Siberia to Barents-Kara Sea sea ice loss P Zhang, Y Wu, IR Simpson, KL Smith, X Zhang, B De, P Callaghan Science advances 4 (7), eaat6025, 2018 | 210 | 2018 |
Changes in storm tracks and energy transports in a warmer climate simulated by the GFDL CM2. 1 model Y Wu, M Ting, R Seager, HP Huang, MA Cane Climate dynamics 37 (1), 53-72, 2011 | 159 | 2011 |
Weakened potential vorticity barrier linked to recent winter Arctic sea ice loss and midlatitude cold extremes D Luo, X Chen, J Overland, I Simmonds, Y Wu, P Zhang Journal of Climate 32 (14), 4235-4261, 2019 | 148 | 2019 |
Response of Northern Hemisphere Midlatitude Circulation to Arctic Amplification in a Simple Atmospheric General Circulation Model Y Wu, K Smith Journal of Climate, 2016 | 99 | 2016 |
Prolonged Effect of the Stratospheric Pathway in Linking Barents-Kara Sea Sea Ice Variability to the Midlatitude Circulation in a Simplified Model P Zhang, Y Wu, K Smith Climate Dynamics, 2017 | 79 | 2017 |
The ozone hole indirect effect: Cloud‐radiative anomalies accompanying the poleward shift of the eddy‐driven jet in the Southern Hemisphere KM Grise, LM Polvani, G Tselioudis, Y Wu, MD Zelinka Geophysical Research Letters 40 (14), 3688-3692, 2013 | 69 | 2013 |
The downward influence of uncertainty in the Northern Hemisphere stratospheric polar vortex response to climate change IR Simpson, P Hitchcock, R Seager, Y Wu, P Callaghan Journal of Climate 31 (16), 6371-6391, 2018 | 59 | 2018 |
The role of subtropical irreversible PV mixing in the zonal mean circulation response to global warming–like thermal forcing J Lu, L Sun, Y Wu, G Chen Journal of Climate 27 (6), 2297-2316, 2014 | 57 | 2014 |
A stratospheric pathway linking a colder Siberia to Barents-Kara Sea sea ice loss. Sci. Adv., 4, eaat6025 P Zhang, Y Wu, IR Simpson, KL Smith, X Zhang, B De, P Callaghan | 55 | 2018 |
Arctic change and possible influence on mid-latitude climate and weather: a US CLIVAR White Paper J Cohen, X Zhang, J Francis, T Jung, R Kwok, J Overland, T Ballinger, ... US CLIVAR reports, 2018 | 53* | 2018 |
The importance of the Montreal Protocol in protecting Earth’s hydroclimate Y Wu, LM Polvani, R Seager Journal of Climate 26 (12), 4049-4068, 2013 | 53 | 2013 |
Atmospheric circulation response to an instantaneous doubling of carbon dioxide. Part I: Model experiments and transient thermal response in the troposphere Y Wu, R Seager, M Ting, N Naik, TA Shaw Journal of Climate 25 (8), 2862-2879, 2012 | 51 | 2012 |
Recent trends in extreme precipitation and temperature over southeastern South America: The dominant role of stratospheric ozone depletion in the CESM Large Ensemble Y Wu, LM Polvani Journal of Climate 30 (16), 6433-6441, 2017 | 37 | 2017 |
Atmospheric circulation response to an instantaneous doubling of carbon dioxide. Part II: Atmospheric transient adjustment and its dynamics Y Wu, R Seager, TA Shaw, M Ting, N Naik Journal of climate 26 (3), 918-935, 2013 | 34 | 2013 |
North American cold events following Sudden Stratospheric Warming in the presence of low Barents-Kara Sea sea ice P Zhang, Y Wu, G Chen, Y Yu Environmental Research Letters, 2020 | 30 | 2020 |
Robustness of the stratospheric pathway in linking the Barents-Kara Sea sea ice variability to the mid-latitude circulation in CMIP5 models B De, Y Wu Climate dynamics 53 (1), 193-207, 2019 | 28 | 2019 |
Nonlinear response of atmospheric blocking to early winter Barents–Kara Seas warming: An idealized model study X Chen, D Luo, Y Wu, E Dunn-Sigouin, J Lu Journal of Climate 34 (6), 2367-2383, 2021 | 27 | 2021 |
Divergent consensuses on Arctic amplification influence on midlatitude severe winter weather. Nat Clim Change 10: 20–29 J Cohen, X Zhang, J Francis, T Jung, R Kwok, J Overland, TJ Ballinger, ... | 23 | 2020 |
Intermodel spread in the northern hemisphere stratospheric polar vortex response to climate change in the CMIP5 models Y Wu, IR Simpson, R Seager Geophysical Research Letters 46 (22), 13290-13298, 2019 | 20 | 2019 |