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Mass balance of the Greenland Ice Sheet from 1992 to 2018 Nature 579 (7798), 233-239, 2020 | 595 | 2020 |
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 | 345 | 2021 |
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 | 267 | 2020 |
The impact of glacier geometry on meltwater plume structure and submarine melt in Greenland fjords D Carroll, DA Sutherland, B Hudson, T Moon, GA Catania, EL Shroyer, ... Geophysical Research Letters 43 (18), 9739-9748, 2016 | 136 | 2016 |
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Subsurface iceberg melt key to Greenland fjord freshwater budget T Moon, DA Sutherland, D Carroll, D Felikson, L Kehrl, F Straneo Nature Geoscience 11 (1), 49-54, 2018 | 112 | 2018 |
Inland thinning on the Greenland ice sheet controlled by outlet glacier geometry D Felikson, TC Bartholomaus, GA Catania, NJ Korsgaard, KH Kjær, ... Nature Geoscience 10 (5), 366-369, 2017 | 102 | 2017 |
Estimating Greenland tidewater glacier retreat driven by submarine melting DA Slater, F Straneo, D Felikson, CM Little, H Goelzer, X Fettweis, J Holte The Cryosphere 13 (9), 2489-2509, 2019 | 96 | 2019 |
Twenty-first century ocean forcing of the Greenland ice sheet for modelling of sea level contribution DA Slater, D Felikson, F Straneo, H Goelzer, CM Little, M Morlighem, ... The Cryosphere 14 (3), 985-1008, 2020 | 90 | 2020 |
Future sea level change under coupled model intercomparison project phase 5 and phase 6 scenarios from the Greenland and Antarctic ice sheets AJ Payne, S Nowicki, A Abe‐Ouchi, C Agosta, P Alexander, T Albrecht, ... Geophysical Research Letters 48 (16), e2020GL091741, 2021 | 76 | 2021 |
Contrasts in the response of adjacent fjords and glaciers to ice-sheet surface melt in West Greenland TC Bartholomaus, LA Stearns, DA Sutherland, EL Shroyer, JD Nash, ... Annals of Glaciology 57 (73), 25-38, 2016 | 73 | 2016 |
Steep glacier bed knickpoints mitigate inland thinning in Greenland D Felikson, G A Catania, TC Bartholomaus, M Morlighem, BPY Noël Geophysical Research Letters 48 (2), e2020GL090112, 2021 | 42 | 2021 |
Comparison of elevation change detection methods from ICESat altimetry over the Greenland Ice Sheet D Felikson, TJ Urban, BC Gunter, N Pie, HD Pritchard, R Harpold, ... IEEE Transactions on Geoscience and Remote Sensing 55 (10), 5494-5505, 2017 | 41 | 2017 |
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High‐spatial‐resolution mass rates from GRACE and GRACE‐FO: Global and ice sheet analyses BD Loomis, D Felikson, TJ Sabaka, B Medley Journal of Geophysical Research: Solid Earth 126 (12), e2021JB023024, 2021 | 30 | 2021 |
Ambiguous stability of glaciers at bed peaks AA Robel, SS Pegler, G Catania, D Felikson, LM Simkins Journal of Glaciology 68 (272), 1177-1184, 2022 | 26 | 2022 |
GBaTSv2: a revised synthesis of the likely basal thermal state of the Greenland Ice Sheet JA MacGregor, W Chu, WT Colgan, MA Fahnestock, D Felikson, ... The Cryosphere Discussions 2022, 1-25, 2022 | 21 | 2022 |
Helheim Glacier ice velocity variability responds to runoff and terminus position change at different timescales L Ultee, D Felikson, B Minchew, LA Stearns, B Riel Nature Communications 13 (1), 6022, 2022 | 17 | 2022 |
Modeling the Greenland Ice Sheet's committed contribution to sea level during the 21st century IJ Nias, S Nowicki, D Felikson, B Loomis Journal of Geophysical Research: Earth Surface 128 (2), e2022JF006914, 2023 | 16 | 2023 |