Area of research
Atmospheric Science · Management, Monitoring, Policy and Law
Research interest
Research interests include Geology, Glacier, Ice shelf, Ice stream, Snow, and Debris.
Glacier processes from seismic recordings on Sørsdal Glacier, East Antarctica
Influence of the grounding zone on the internal structure of ice shelves
Seismicity of Denman Glacier: Constraints on Geometry and Dynamics
Imaging Brine Infiltration and Basal Marine Ice in Larsen C Ice Shelf, Antarctic Peninsula, From Borehole Measurements and Transient Electromagnetics
Geological sketch map and implications for ice flow of Thwaites Glacier, West Antarctica, from integrated aerogeophysical observations
Glaciological history and structural evolution of the Shackleton Ice Shelf system, East Antarctica, over the past 60 years
The drainage of glacier and ice sheet surface lakes
Improved imaging of ground deformation and brine seepage around abandoned flooded salt mines by joint inversion of multiphysics data
Glaciological setting of the Queen Mary and Knox coasts, East Antarctica, over the past 60 years, and implied dynamic stability of the Shackleton system
Airborne and ground-based geophysical evaluation of the surface and englacial hydrological system of the Sørsdal Glacier, East Antarctica, and implications for ice-shelf stability
Comparing satellite and helicopter-based methods for observing crevasses, application in East Antarctica
Seismoelectric Characterization of Ice Sheets and Glaciers
Seawater softening of suture zones inhibits fracture propagation in Antarctic ice shelves
Heat and groundwater transport between the Antarctic Ice Sheet and subglacial sedimentary basins from electromagnetic geophysical measurements
Structure and evolution of the drainage system of a Himalayan debris-covered glacier, and its relationship with patterns of mass loss
Anatomy of terminal moraine segments and implied lake stability on Ngozumpa Glacier, Nepal, from electrical resistivity tomography (ERT)
Multiannual observations and modelling of seasonal thermal profiles through supraglacial debris in the Central Himalaya
Holocene book review: Climate Change, Glacier Response, and Vegetation Dynamics in the Himalaya: Contributions toward Future Earth Initiatives
Stagnation and mass loss on a Himalayan debris-covered glacier: processes, patterns and rates
Bulk meltwater flow and liquid water content of snowpacks mapped using the electrical self-potential (SP) method
The electrical self-potential method is a non-intrusive snow-hydrological sensor
The Electrical Self-Potential Method as a Non-Intrusive Snow-Hydrological Sensor
2015 AGU Fall Meeting 2015cited by 0position: middle
Response of debris-covered glaciers in the Mount Everest region to recent warming, and implications for outburst flood hazards
Integrated electrical resistivity tomography (ERT) and self-potential (SP) techniques for assessing hydrological processes within glacial lake moraine dams