Potential sea-level rise from Antarctic ice-sheet instability constrained by observations C Ritz, TL Edwards, G Durand, AJ Payne, V Peyaud, RCA Hindmarsh Nature 528 (7580), 115-118, 2015 | 388 | 2015 |
Global environmental consequences of twenty-first-century ice-sheet melt NR Golledge, ED Keller, N Gomez, KA Naughten, J Bernales, LD Trusel, ... Nature 566 (7742), 65-72, 2019 | 370 | 2019 |
Future sea-level rise from Greenland’s main outlet glaciers in a warming climate FM Nick, A Vieli, ML Andersen, I Joughin, A Payne, TL Edwards, F Pattyn, ... Nature 497 (7448), 235-238, 2013 | 316 | 2013 |
Revisiting Antarctic ice loss due to marine ice-cliff instability TL Edwards, MA Brandon, G Durand, NR Edwards, NR Golledge, ... Nature 566 (7742), 58-64, 2019 | 301 | 2019 |
Projected land ice contributions to twenty-first-century sea level rise TL Edwards, S Nowicki, B Marzeion, R Hock, H Goelzer, H Seroussi, ... Nature 593 (7857), 74-82, 2021 | 281 | 2021 |
UKCP18 science overview report JA Lowe, D Bernie, P Bett, L Bricheno, S Brown, D Calvert, R Clark, ... Met Office Hadley Centre: Exeter, UK, 1-73, 2018 | 277 | 2018 |
The future sea-level contribution of the Greenland ice sheet: a multi-model ensemble study of ISMIP6 H Goelzer, S Nowicki, A Payne, E Larour, H Seroussi, WH Lipscomb, ... The Cryosphere 14 (9), 3071-3096, 2020 | 224 | 2020 |
Century-scale simulations of the response of the West Antarctic Ice Sheet to a warming climate S Cornford, D Martin, A Payne, E Ng, A Brocq, R Gladstone, T Edwards, ... The Cryosphere 9, 1579–1600, 2015 | 174 | 2015 |
The Antarctic Peninsula under a 1.5 C global warming scenario M Siegert, A Atkinson, A Banwell, M Brandon, P Convey, B Davies, ... Frontiers in Environmental Science 7, 102, 2019 | 161 | 2019 |
Sensitivity of Greenland ice sheet projections to model formulations H Goelzer, P Huybrechts, JJ Fürst, FM Nick, ML Andersen, TL Edwards, ... Journal of Glaciology 59 (216), 733-749, 2013 | 129 | 2013 |
Greenland ice sheet surface mass balance: evaluating simulations and making projections with regional climate models J Rae, G Aðalgeirsdóttir, T Edwards, X Fettweis, G Gregory, H Hewitt, ... Cryosphere (The) 6, 1275-1294, 2012 | 118 | 2012 |
Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison H Goelzer, S Nowicki, T Edwards, M Beckley, A Abe-Ouchi, ... The Cryosphere 12 (4), 1433-1460, 2018 | 117 | 2018 |
Enhanced basal lubrication and the contribution of the Greenland ice sheet to future sea-level rise SR Shannon, AJ Payne, ID Bartholomew, MR Van Den Broeke, ... Proceedings of the National Academy of Sciences 110 (35), 14156-14161, 2013 | 110 | 2013 |
Communicating probabilistic information from climate model ensembles—lessons from numerical weather prediction EM Stephens, TL Edwards, D Demeritt Wiley interdisciplinary reviews: climate change 3 (5), 409-426, 2012 | 110 | 2012 |
Effect of uncertainty in surface mass balance–elevation feedback on projections of the future sea level contribution of the Greenland ice sheet TL Edwards, X Fettweis, O Gagliardini, F Gillet-Chaulet, H Goelzer, ... The Cryosphere 8 (1), 195-208, 2014 | 94 | 2014 |
Calibrated prediction of Pine Island Glacier retreat during the 21st and 22nd centuries with a coupled flowline model RM Gladstone, V Lee, J Rougier, AJ Payne, H Hellmer, A Le Brocq, ... Earth and Planetary Science Letters 333, 191-199, 2012 | 94 | 2012 |
Using the past to constrain the future: how the palaeorecord can improve estimates of global warming TL Edwards, M Crucifix, SP Harrison Progress in Physical Geography 31 (5), 481-500, 2007 | 90 | 2007 |
UKCP18 marine report M Palmer, T Howard, J Tinker, J Lowe, L Bricheno, D Calvert, T Edwards, ... Met Office Hadley Centre, 2018 | 89 | 2018 |
Response of the East Antarctic Ice Sheet to past and future climate change CR Stokes, NJ Abram, MJ Bentley, TL Edwards, MH England, A Foppert, ... Nature 608 (7922), 275-286, 2022 | 75 | 2022 |
Pause for thought E Hawkins, T Edwards, D McNeall Nature Climate Change 4 (3), 154-156, 2014 | 71 | 2014 |