Extended reconstructed sea surface temperature version 4 (ERSST. v4). Part I: Upgrades and intercomparisons B Huang, VF Banzon, E Freeman, J Lawrimore, W Liu, TC Peterson, ... Journal of climate 28 (3), 911-930, 2015 | 1117 | 2015 |
Chinese cave records and the East Asia summer monsoon Z Liu, X Wen, EC Brady, B Otto-Bliesner, G Yu, H Lu, H Cheng, Y Wang, ... Quaternary Science Reviews 83, 115-128, 2014 | 566 | 2014 |
Overlooked possibility of a collapsed Atlantic Meridional Overturning Circulation in warming climate W Liu, SP Xie, Z Liu, J Zhu Science Advances 3 (1), e1601666, 2017 | 296 | 2017 |
Arctic sea-ice decline weakens the Atlantic meridional overturning circulation F Sévellec, AV Fedorov, W Liu Nature Climate Change 7 (8), 604-610, 2017 | 295 | 2017 |
Extended reconstructed sea surface temperature version 4 (ERSST. v4): Part II. Parametric and structural uncertainty estimations W Liu, B Huang, PW Thorne, VF Banzon, HM Zhang, E Freeman, ... Journal of Climate 28 (3), 931-951, 2015 | 262 | 2015 |
Further exploring and quantifying uncertainties for extended reconstructed sea surface temperature (ERSST) version 4 (v4) B Huang, PW Thorne, TM Smith, W Liu, J Lawrimore, VF Banzon, ... Journal of Climate 29 (9), 3119-3142, 2016 | 189 | 2016 |
Stability of the Atlantic Meridional Overturning Circulation: A review and synthesis W Weijer, W Cheng, SS Drijfhout, AV Fedorov, A Hu, LC Jackson, W Liu, ... Journal of Geophysical Research: Oceans 124 (8), 5336-5375, 2019 | 185 | 2019 |
Tracking ocean heat uptake during the surface warming hiatus W Liu, SP Xie, J Lu Nature communications 7 (1), 10926, 2016 | 174 | 2016 |
Climate impacts of a weakened Atlantic Meridional Overturning Circulation in a warming climate W Liu, AV Fedorov, SP Xie, S Hu Science advances 6 (26), eaaz4876, 2020 | 173 | 2020 |
The mechanisms of the Atlantic meridional overturning circulation slowdown induced by Arctic sea ice decline W Liu, A Fedorov, F Sévellec Journal of Climate 32 (4), 977-996, 2019 | 96 | 2019 |
Southern Ocean heat uptake, redistribution, and storage in a warming climate: The role of meridional overturning circulation W Liu, J Lu, SP Xie, A Fedorov Journal of Climate 31 (12), 4727-4743, 2018 | 90 | 2018 |
Primary study of the mechanism of eddy shedding from the Kuroshio bend in Luzon Strait Y Jia, Q Liu, W Liu Journal of Oceanography 61, 1017-1027, 2005 | 77 | 2005 |
Process drivers, inter-model spread, and the path forward: A review of amplified Arctic warming PC Taylor, RC Boeke, LN Boisvert, N Feldl, M Henry, Y Huang, ... Frontiers in Earth Science 9, 758361, 2022 | 70 | 2022 |
Ocean warming and accelerating Southern Ocean zonal flow JR Shi, LD Talley, SP Xie, Q Peng, W Liu Nature Climate Change 11 (12), 1090-1097, 2021 | 68 | 2021 |
Why does global warming weaken the Gulf Stream but intensify the Kuroshio? C Chen, G Wang, SP Xie, W Liu Journal of Climate 32 (21), 7437-7451, 2019 | 68 | 2019 |
Linear weakening of the AMOC in response to receding glacial ice sheets in CCSM3 J Zhu, Z Liu, X Zhang, I Eisenman, W Liu Geophysical Research Letters 41 (17), 6252-6258, 2014 | 68 | 2014 |
Surface warming–induced global acceleration of upper ocean currents Q Peng, SP Xie, D Wang, RX Huang, G Chen, Y Shu, JR Shi, W Liu Science Advances 8 (16), eabj8394, 2022 | 66 | 2022 |
Global impacts of Arctic sea ice loss mediated by the Atlantic meridional overturning circulation W Liu, AV Fedorov Geophysical Research Letters 46 (2), 944-952, 2019 | 60 | 2019 |
Uncertainty in tropical rainfall projections: Atmospheric circulation effect and the ocean coupling SM Long, SP Xie, W Liu Journal of Climate 29 (7), 2671-2687, 2016 | 58 | 2016 |
Why is the AMOC monostable in coupled general circulation models? W Liu, Z Liu, EC Brady Journal of Climate 27 (6), 2427-2443, 2014 | 58 | 2014 |