Publications
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“Active seismic studies in valley glacier settings: strategies and limitations”, Journal of Glaciology, vol. 64, pp. 796–810, 2018.
, “Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison”, The Cryosphere, vol. 12, pp. 1433–1460, 2018.
, “Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison”, The Cryosphere, vol. 12, pp. 1433–1460, 2018.
, “Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison”, The Cryosphere, vol. 12, pp. 1433–1460, 2018.
, “Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison”, The Cryosphere, vol. 12, pp. 1433–1460, 2018.
, “Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison”, The Cryosphere, vol. 12, pp. 1433–1460, 2018.
, “Design and results of the ice sheet model initialisation experiments initMIP-Greenland: an ISMIP6 intercomparison”, The Cryosphere, vol. 12, pp. 1433–1460, 2018.
, “A large impact crater beneath Hiawatha Glacier in northwest Greenland”, Science Advances, vol. 4, p. eaar8173, 2018.
, “Sub-ice-shelf sediments record history of twentieth-century retreat of Pine Island Glacier”, Nature, vol. 541, pp. 77–80, 2017.
, “Holocene deceleration of the Greenland Ice Sheet”, Science, vol. 351, pp. 590–593, 2016.
, “A synthesis of the basal thermal state of the Greenland Ice Sheet”, Journal of Geophysical Research: Earth Surface, 2016.
, “End-of-winter snow depth variability on glaciers in Alaska”, Journal of Geophysical Research: Earth Surface, vol. 120, pp. 1530–1550, 2015.
, “Radar attenuation and temperature within the Greenland Ice Sheet”, Journal of Geophysical Research: Earth Surface, vol. 120, pp. 983–1008, 2015.
, “Radar attenuation and temperature within the Greenland Ice Sheet”, Journal of Geophysical Research: Earth Surface, vol. 120, pp. 983–1008, 2015.
, “Radiostratigraphy and age structure of the Greenland Ice Sheet”, Journal of Geophysical Research: Earth Surface, vol. 120, pp. 212–241, 2015.
, “Rapid large-area mapping of ice flow using Landsat 8”, Remote Sensing of Environment, 2015.
, “Recent Arctic tundra fire initiates widespread thermokarst development”, Scientific Reports, vol. 5, p. 15865 - , 2015.
, “Helicopter borne radar imaging of snow cover on and around glaciers in Alaska”, Annals of Glaciology, vol. 55, pp. 78-88, 2014.
, “The Randolph Glacier Inventory: a globally complete inventory of glaciers”, vol. 60, pp. 537 - 552, 2014.
, “Analysis of a GRACE global mascon solution for Gulf of Alaska glaciers”, Journal of Glaciology, vol. 59, no. 217, pp. 913-924, 2013.
, “Challenges to Understanding the Dynamic Response of Greenland's Marine Terminating Glaciers to Oceanic and Atmospheric Forcing”, Bulletin of the American Meteorological Society, vol. 94, no. 8, pp. 1131 - 1144, 2013.
, “Geodetic Mass Balance of Glaciers in the Central Brooks Range, Alaska, USA, from 1970 to 2001”, Arctic, Antarctic, and Alpine Research, vol. 45, no. 1, pp. 29–38, 2013.
, “Glaciers and ice caps (outside Greenland)”, Bull. Amer. Meteor. Soc. 94(7), S143, 2013.
, “Ice-sheet model sensitivities to environmental forcing and their use in projecting future sea-level (The SeaRISE Project)”, J. Glaciol, vol. 59, no. 214, pp. 195–224, 2013.
“Ice-sheet model sensitivities to environmental forcing and their use in projecting future sea-level (The SeaRISE Project)”, J. Glaciol, vol. 59, no. 214, pp. 195–224, 2013.
“Ice-sheet model sensitivities to environmental forcing and their use in projecting future sea-level (The SeaRISE Project)”, J. Glaciol, vol. 59, no. 214, pp. 195–224, 2013.
“Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project II: Greenland”, J. Geophys. Res., vol. 118, pp. 1025–1044, 2013.
, “Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project II: Greenland”, J. Geophys. Res., vol. 118, pp. 1025–1044, 2013.
, “Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project II: Greenland”, J. Geophys. Res., vol. 118, pp. 1025–1044, 2013.
, “Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project I: Antarctica”, J. Geophys. Res., vol. 118, pp. 1002–1024, 2013.
, “Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project I: Antarctica”, J. Geophys. Res., vol. 118, pp. 1002–1024, 2013.
, “Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project I: Antarctica”, J. Geophys. Res., vol. 118, pp. 1002–1024, 2013.
, “Low-frequency radar sounding of temperate ice masses in Southern Alaska”, Geophysical Research Letters, p. n/a–n/a, 2013.
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“A nonsmooth Newton multigrid method for a hybrid, shallow model of marine ice sheets”, Contemporary Mathematics, vol. 586, pp. 197-205, 2013.
, “A Reconciled Estimate of Glacier Contributions to Sea Level Rise: 2003 to 2009”, Science, vol. 340, pp. 852-857, 2013.
, “Variable penetration depth of interferometric synthetic aperture radar signals on Alaska glaciers: a cold surface layer hypothesis”, Annals of Glaciology, vol. 54, no. 64, pp. 218-223, 2013.
, “Accelerated contributions of Canada's Baffin and Bylot Island glaciers to sea level rise over the past half century”, The Cryosphere, vol. 6, pp. 1103–1125, 2012.
, “The crystal fabric of ice from full-waveform borehole sonic logging”, Journal of Geophysical Research: Earth Surface (2003–2012), vol. 117, 2012.
, “A detailed view into the eruption clouds of Santiaguito volcano, Guatemala, using Doppler radar”, Journal of Geophysical Research: Solid Earth, vol. 117, p. n/a–n/a, 2012.
, “From ice-shelf tributary to tidewater glacier: continued rapid recession, acceleration and thinning of Rohss Glacier following the 1995 collapse of the Prince Gustav Ice Shelf, Antarctic Peninsula”, Journal of Glaciology, vol. 57, pp. 397–406, 2011.
, “Greenland Ice Sheet surface mass balance 1870 to 2010 based on Twentieth Century Reanalysis, and links with global climate forcing”, Journal of Geophysical Research D: Atmospheres, vol. 116, 2011.
, “Karakoram glacier surge dynamics”, Geophysical Research Letters, vol. 38, p. L18504, 2011.
, “Results from the Ice-Sheet Model Intercomparison ProjectHeinrich Event INtercOmparison (ISMIP HEINO)”, Journal of Glaciology, vol. 56, pp. 371-383, 2010.
, “Vertical distribution of water within the polythermal Storglaciären, Sweden”, J. Geophys. Res., vol. 115, pp. 1–14, 2010.
, “Benchmark experiments for higher-order and full Stokes ice sheet models (ISMIP-HOM)”, The Cryosphere, vol. 2, pp. 95–108, 2008.
, “Benchmark experiments for higher-order and full Stokes ice sheet models (ISMIP-HOM)”, The Cryosphere, vol. 2, pp. 95–108, 2008.
, “Comparison of remote sensing derived glacier facies maps with distributed mass balance modelling at Engabreen, northern Norway.”, in Proceedings of a workshop on Andean Glaciology and a symposium on the Contribution from Glaciers and Snow Cover to Runoff from Mountains in Different Climates during the 7th Scientific Assembly of the IAHS, Foz do Iguacu, Brazil, 4-9 April 2005., 2007.
“Deriving glacier mass balance from accumulation area ratio on Storglaciären, Sweden.”, in Proceedings of a workshop on Andean Glaciology and a symposium on the Contribution from Glaciers and Snow Cover to Runoff from Mountains in Different Climates during the 7th Scientific Assembly of the IAHS, Foz do Iguacu, Brazil, 4-9 April 2005., 2007.
“Glacier changes in southeast Alaska and northwest British Columbia and contribution to sea level rise”, J. Geophys. Res, vol. 112, p. F01007, 2007.
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