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Wei, W. et al., 2020. Getz Ice Shelf melt enhanced by freshwater discharge from beneath the West Antarctic Ice Sheet. Cryosphere, 14.
Dow, C.F. et al., 2020. Totten Glacier subglacial hydrology determined from geophysics and modeling. Earth and Planetary Science Letters, 531, p.115961.
Poinar, K., Dow, C.F. & Andrews, L.C., 2019. Long-Term Support of an Active Subglacial Hydrologic System in Southeast Greenland by Firn Aquifers. Geophysical Research Letters, 46, pp.4772–4781.
Riverman, K.L. et al., 2019. Wet subglacial bedforms of the NE Greenland Ice Stream shear margins. Annals of Glaciology, 60, pp.91–99.
Dow, C.F., Karlsson, N.B. & Werder, M.A., 2018. Limited impact of subglacial supercooling freeze-on for Greenland ice sheet stratigraphy. Geophysical Research Letters, 45, pp.1481–1489.
Dow, C.F. et al., 2018. Dynamics of active subglacial lakes in Recovery Ice Stream. Journal of Geophysical Research: Earth Surface, 123, pp.837–850.
Dow, C.F. et al., 2018. Basal channels drive active surface hydrology and transverse ice shelf fracture. Science advances, 4, p.eaao7212.
de Fleurian, B. et al., 2018. SHMIP The subglacial hydrology model intercomparison Project. Journal of Glaciology, 64, pp.897–916.
Sanders, J.W. et al., 2018. Variations in the surface velocity of an alpine cirque glacier. Journal of Glaciology, 64, pp.969–976.
Walker, R.T. et al., 2017. Determining ice-sheet uplift surrounding lakes with a viscous plate model. Frontiers in Earth Sciences, 5, p.103.
Kulessa, B. et al., 2017. Seismic evidence for complex sedimentary control of Greenland Ice Sheet flow. Science Advances, 3, p.e1603071.
Dow, C.F., Werder, M.A. & Walker, R.T., 2016. Modeling Antarctic subglacial lake filling and drainage cycles. The Cryosphere, 10, pp.1381–1393.
Dow, C.F. et al., 2015. Modeling of subglacial hydrological development following rapid supraglacial lake drainage. Journal of Geophysical Research: Earth Surface.
Fitzpatrick, A.A.W. et al., 2014. A decade (2002–2012) of supraglacial lake volume estimates across Russell Glacier, West Greenland. The Cryosphere, 8, pp.107–121.
Dow, C.F. et al., 2014. A test of common assumptions used to infer subglacial water flow through overdeepenings. Journal of Glaciology, 60, pp.725–734.
Dow, C.F. et al., 2014. Upper bounds on subglacial channel development for interior regions of the Greenland Ice Sheet. Journal of Glaciology, 60, pp.1044-1052.
Jones, G.A. et al., 2013. An automated approach to the location of icequakes using seismic waveform amplitudes. Annals of Glaciology, 54, pp.1–9.
Doyle, S.H. et al., 2013. Ice tectonic deformation during the rapid in situ drainage of a supraglacial lake on the Greenland Ice Sheet. The Cryosphere, 7, pp.129–140. Available at: http://www.the-cryosphere.net/7/129/2013/.
Dow, C.F. et al., 2013. Seismic evidence of mechanically-weak sediments underlying Russell Glacier, West Greenland. Annals of Glaciology, 54, pp.135–141.
Dow, C.F. et al., 2011. Subsurface hydrology of an overdeepened cirque glacier. Journal of Glaciology, 57, pp.1067–1078.