El Niño–Southern Oscillation and its impact in the changing climate S Yang, Z Li, JY Yu, X Hu, W Dong, S He National Science Review 5 (6), 840-857, 2018 | 182 | 2018 |
Contrasting the eastern Pacific El Niño and the central Pacific El Niño: Process-based feedback attribution X Hu, S Yang, M Cai Climate Dynamics 47, 2413-2424, 2016 | 34 | 2016 |
Inferring future warming in the Arctic from the observed global warming trend and CMIP6 simulations XM Hu, JR Ma, J Ying, M Cai, YQ Kong Advances in Climate Change Research 12 (4), 499-507, 2021 | 32 | 2021 |
Dominant role of vertical air flows in the unprecedented warming on the Antarctic Peninsula in February 2020 M Xu, L Yu, K Liang, T Vihma, D Bozkurt, X Hu, Q Yang Communications Earth & Environment 2 (1), 133, 2021 | 29 | 2021 |
A less cloudy picture of the inter-model spread in future global warming projections X Hu, H Fan, M Cai, SA Sejas, P Taylor, S Yang Nature Communications 11 (1), 4472, 2020 | 28 | 2020 |
The dominant role of snow/ice albedo feedback strengthened by black carbon in the enhanced warming over the Himalayas J Ma, T Zhang, X Guan, X Hu, A Duan, J Liu Journal of Climate 32 (18), 5883-5899, 2019 | 28 | 2019 |
Air temperature feedback and its contribution to global warming X Hu, M Cai, S Yang, SA Sejas Science China Earth Sciences 61, 1491-1509, 2018 | 27 | 2018 |
Process-based decomposition of the decadal climate difference between 2002–13 and 1984–95 X Hu, Y Li, S Yang, Y Deng, M Cai Journal of Climate 30 (12), 4373-4393, 2017 | 25 | 2017 |
Climate change in Southeast Asia and surrounding areas S Yang, R Wu, M Jian, J Huang, X Hu, Z Wang, X Jiang Springer Nature, 2020 | 22 | 2020 |
Inter-model warming projection spread: inherited traits from control climate diversity X Hu, PC Taylor, M Cai, S Yang, Y Deng, S Sejas Scientific reports 7 (1), 4300, 2017 | 20 | 2017 |
Transformable vesicles for cancer immunotherapy S Wang, X Hu, W Wei, G Ma Advanced Drug Delivery Reviews 179, 113905, 2021 | 19 | 2021 |
Decadal evolution of the surface energy budget during the fast warming and global warming hiatus periods in the ERA-interim X Hu, SA Sejas, M Cai, PC Taylor, Y Deng, S Yang Climate dynamics 52, 2005-2016, 2019 | 18 | 2019 |
Process‐based attribution of long‐term surface warming over the Tibetan Plateau Y Wu, S Yang, X Hu, W Wei International Journal of Climatology 40 (15), 6410-6422, 2020 | 16 | 2020 |
Detection and attribution of upper-tropospheric warming over the tropical western Pacific Y Li, S Yang, Y Deng, X Hu, M Cai, W Zhou Climate Dynamics 53, 3057-3068, 2019 | 16 | 2019 |
Delineation of thermodynamic and dynamic responses to sea surface temperature forcing associated with El Niño X Hu, M Cai, S Yang, Z Wu Climate Dynamics 51, 4329-4344, 2018 | 14 | 2018 |
Atmospheric dynamics footprint on the January 2016 ice sheet melting in West Antarctica X Hu, SA Sejas, M Cai, Z Li, S Yang Geophysical Research Letters 46 (5), 2829-2835, 2019 | 12 | 2019 |
Influence of convective heating over the maritime continent on the West Antarctic climate J Chen, X Hu, S Yang, S Lin, Z Li Geophysical Research Letters 49 (9), e2021GL097322, 2022 | 10 | 2022 |
A process-level attribution of the annual cycle of surface temperature over the Maritime Continent Y Li, S Yang, Y Deng, X Hu, M Cai Climate Dynamics 51, 2759-2772, 2018 | 10 | 2018 |
A Quantitative Analysis of the Source of Inter‐Model Spread in Arctic Surface Warming Response to Increased CO2 Concentration X Hu, Y Liu, Y Kong, Q Yang Geophysical Research Letters 49 (18), e2022GL100034, 2022 | 9 | 2022 |
Charge in long-lasting El Niño events by convection-induced wind anomalies over the Western Pacific in boreal spring Z Li, S Yang, X Hu, W Dong, B He Journal of Climate 31 (10), 3755-3763, 2018 | 9 | 2018 |