Randolph glacier inventory–A dataset of global glacier outlines: Version 6.0: Technical report, global land ice measurements from space A Arendt, A Bliss, T Bolch, JG Cogley, A Gardner, JO Hagen, R Hock, ... RGI Consortium, 2017 | 320 | 2017 |
Climatic and geometric controls on the global distribution of surge-type glaciers: implications for a unifying model of surging H Sevestre, DI Benn Journal of Glaciology 61 (228), 646-662, 2015 | 287 | 2015 |
A general theory of glacier surges DI Benn, AC Fowler, I Hewitt, H Sevestre Journal of Glaciology 65 (253), 701-716, 2019 | 118 | 2019 |
Massive subsurface ice formed by refreezing of ice-shelf melt ponds B Hubbard, A Luckman, DW Ashmore, S Bevan, B Kulessa, ... Nature communications 7 (1), 11897, 2016 | 91 | 2016 |
Thermal structure of Svalbard glaciers and implications for thermal switch models of glacier surging H Sevestre, DI Benn, NRJ Hulton, K Bælum Journal of Geophysical Research: Earth Surface 120 (10), 2220-2236, 2015 | 87 | 2015 |
Rapidly changing subglacial hydrological pathways at a tidewater glacier revealed through simultaneous observations of water pressure, supraglacial lakes, meltwater plumes and … P How, DI Benn, NRJ Hulton, B Hubbard, A Luckman, H Sevestre, ... The Cryosphere 11 (6), 2691-2710, 2017 | 63 | 2017 |
Tidewater glacier surges initiated at the terminus H Sevestre, DI Benn, A Luckman, C Nuth, J Kohler, K Lindbäck, ... Journal of Geophysical Research: Earth Surface 123 (5), 1035-1051, 2018 | 51 | 2018 |
The ice‐free topography of Svalbard JJ Fürst, F Navarro, F Gillet‐Chaulet, M Huss, G Moholdt, X Fettweis, ... Geophysical Research Letters 45 (21), 11,760-11,769, 2018 | 41 | 2018 |
Dynamic vulnerability revealed in the collapse of an Arctic tidewater glacier C Nuth, A Gilbert, A Köhler, R McNabb, T Schellenberger, H Sevestre, ... Scientific reports 9 (1), 5541, 2019 | 40 | 2019 |
Centuries of intense surface melt on Larsen C Ice Shelf SL Bevan, A Luckman, B Hubbard, B Kulessa, D Ashmore, ... The Cryosphere 11 (6), 2743-2753, 2017 | 28 | 2017 |
Observationally constrained surface mass balance of Larsen C ice shelf, Antarctica P Kuipers Munneke, D McGrath, B Medley, A Luckman, S Bevan, ... The Cryosphere 11 (6), 2411-2426, 2017 | 23 | 2017 |
Ice and firn heterogeneity within Larsen C Ice Shelf from borehole optical televiewing DW Ashmore, B Hubbard, A Luckman, B Kulessa, S Bevan, A Booth, ... Journal of Geophysical Research: Earth Surface 122 (5), 1139-1153, 2017 | 21 | 2017 |
Multiple Late Holocene surges of a High-Arctic tidewater glacier system in Svalbard H Lovell, DI Benn, S Lukas, D Ottesen, A Luckman, M Hardiman, ID Barr, ... Quaternary Science Reviews 201, 162-185, 2018 | 19 | 2018 |
Characterization of the englacial and subglacial drainage system in a high Arctic cold glacier by speleological mapping and ground-penetrating radar M Temminghoff, DI Benn, JD Gulley, H Sevestre Geografiska Annaler: Series A, Physical Geography 101 (2), 98-117, 2019 | 15 | 2019 |
A cross-validated three-dimensional model of an englacial and subglacial drainage system in a High-Arctic glacier LU Hansen, JA Piotrowski, DI Benn, H Sevestre Journal of Glaciology 66 (256), 278-290, 2020 | 14 | 2020 |
Massive subsurface ice formed by refreezing of ice-shelf melt ponds, Nat. Commun., 7, 11897 B Hubbard, A Luckman, DW Ashmore, S Bevan, B Kulessa, ... | 11 | 2016 |
Surge-type glaciers: controls, processes and distribution H Sevestre | 11 | 2015 |
Massive subsurface ice formed by refreezing of ice-shelf melt ponds, Nat. Commun., 7, 1–6 B Hubbard, A Luckman, DW Ashmore, S Bevan, B Kulessa, ... | 10 | 2016 |
Climatic and Topographic Controls on the Global Distribution of Surge-type Glaciers: Implications for a Unifying Model of Surging H Sevestre, D Benn AGU Fall Meeting Abstracts 2014, C13B-0435, 2014 | 1 | 2014 |
A geodatabase on surge-type glaciers: behaviours, trends and clustering H Sevestre, D Benn, J Hagen AGU Fall Meeting Abstracts 2013, C33A-0683, 2013 | 1 | 2013 |