Publications

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. Ice shelf basal melt rates from a high-resolution DEM record for Pine Island Glacier, Antarctica. The Cryosphere Discussions, 2018, doi:10.5194/tc-2018-209, 2018.

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. Evolution and Controls of Large Glacial Lakes in the Nepal Himalaya. Remote Sensing, 2018, doi:10.3390/rs10050798, 2018.

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. Quantifying Debris Thickness of Debris-Covered Glaciers in the Everest Region of Nepal Through Inversion of a Subdebris Melt Model. Journal of Geophysical Research: Earth Surface, 2018, doi:10.1029/2017JF004395, 2018.

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. Changes in flow of Crosson and Dotson ice shelves, West Antarctica, in response to elevated melt. The Cryosphere, 2018, doi:10.5194/tc-12-1415-2018, 2018.

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. GPS-derived estimates of surface mass balance and ocean-induced basal melt for Pine Island Glacier ice shelf, Antarctica. The Cryosphere, 2017, doi:10.5194/tc-11-2655-2017, 2017.

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. Diverse landscapes beneath Pine Island Glacier influence ice flow. Nature Communications, 2017, doi:10.1038/s41467-017-01597-y, 2017.

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. Seasonal and interannual variability in terminus position, glacier velocity, and surface elevation at Helheim and Kangerlussuaq Glaciers from 2008 to 2016: Helheim and Kangerlugssuaq Glaciers. Journal of Geophysical Research: Earth Surface, 2017, doi:10.1002/2016JF004133, 2017.

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. Sensitivity of Pine Island Glacier to observed ocean forcing: PIG response to ocean forcing. Geophysical Research Letters, 2016, doi:10.1002/2016GL070500, 2016.

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. Grounding line variability and subglacial lake drainage on Pine Island Glacier, Antarctica. Geophysical Research Letters, 2016, doi:10.1002/2016GL070259, 2016.

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. An automated, open-source pipeline for mass production of digital elevation models (DEMs) from very-high-resolution commercial stereo satellite imagery. ISPRS Journal of Photogrammetry and Remote Sensing, 2016, doi:10.1016/j.isprsjprs.2016.03.012, 2016.

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. Estimating supraglacial lake depth in West Greenland using Landsat 8 and comparison with other multispectral methods. The Cryosphere, 2016, doi:10.5194/tc-10-15-2016, 2016.

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. Observations of seasonal and diurnal glacier velocities at Mount Rainier, Washington, using terrestrial radar interferometry. The Cryosphere, 2015, doi:10.5194/tc-9-2219-2015, 2015.

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. Greenland supraglacial lake drainages triggered by hydrologically induced basal slip. Nature, 2015, doi:10.1038/nature14480, 2015.

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. Brief Communication: Further summer speedup of Jakobshavn Isbræ. The Cryosphere, 2014, doi:10.5194/tc-8-209-2014, 2014.

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. Candidate ice-rich material within equatorial craters on Mars. Geophysical Research Letters, 2010, doi:10.1029/2010GL045181, 2010.

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. Impact-induced overland fluid flow and channelized erosion at Lyot Crater, Mars. Geophysical Research Letters, 2010, doi:10.1029/2010GL045074, 2010.

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. Distribution of Mid-Latitude Ground Ice on Mars from New Impact Craters. Science, 2009, doi:10.1126/science.1175307, 2009.

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. Shallow seismic surveys and ice thickness estimates of the Mullins Valley debris-covered glacier, McMurdo Dry Valleys, Antarctica. Antarctic Science, 2007, doi:10.1017/S0954102007000624, 2007.

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. Recent glaciation at high elevations on Arsia Mons, Mars: Implications for the formation and evolution of large tropical mountain glaciers. Journal of Geophysical Research, 2007, doi:10.1029/2006JE002761, 2007.

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. Adviser: immersive field work for planetary geoscientists. IEEE computer graphics and applications, 2006, doi:10.1109/MCG.2006.73, 2006.

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. Origin and evolution of a cold-based tropical mountain glacier on Mars: The Pavonis Mons fan-shaped deposit. Journal of Geophysical Research, 2005, doi:10.1029/2004JE002360, 2005.

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