The airborne glacier and ice surface topography interferometer (GLISTIN-A) is a single-pass radar interferometer developed for accurate high-resolution swath mapping of dynamic ice surfaces. We present the first validation results of the operational sensor, collected in 2013 over glaciers in Alaska and followed by more exhaustive collections from Greenland in 2016 and 2017. In Alaska, overlapping flight-tracks were mosaicked to mitigate potential residual trends across-track and the resultant maps are validated with lidar. Furthermore, repeat acquisitions of Columbia Glacier collected with a three day separation indicate excellent stability and repeatability. Commencing 2016, GLISTIN-A has circumnavigated Greenland for 4 consecutive years. ...
The traditional method for interpolating ice thickness data from airborne radar sounding surveys ont...
Accelerating melt on the Greenland ice sheet leads to dramatic changes at a global scale. Especially...
The Arctic Ice Mapping group (Project AIM) at the NASA Goddard Space Flight Center Wallops Flight Fa...
International audienceThe airborne glacier and ice surface topography interferometer (GLISTIN-A) is ...
Alpine glaciers and perennial snowfields (G&PS) are important hydrologically and ecologically, provi...
As part of the NASA International Polar Year activities, a Ka-band cross-track interferometric synth...
The elevation of ice sheets changes due to climate change, and satellite altimetry is the preferred ...
Remotely sensed surface elevation datasets are key to study mass balance and dynamic behaviours of g...
The elevation of ice sheets changes due to climate change, and satellite altimetry is the preferred ...
Current understanding of glacier mass balance changes under changing climate is limited by scarcity ...
Space-based Interferometric Synthetic Aperture Radar (InSAR) applications have been widely used to m...
Global Land Ice Measurements from Space (GLIMS) is an international initiative to map the world’s gl...
In this study, we assess the accuracy and precision of digital elevation models (DEM) retrieved from...
Remotely sensed glaciological measurements can be expensive, often involving a trade-off between res...
A series of NASA airborne lidars have been used in support of satellite laser altimetry missions. Th...
The traditional method for interpolating ice thickness data from airborne radar sounding surveys ont...
Accelerating melt on the Greenland ice sheet leads to dramatic changes at a global scale. Especially...
The Arctic Ice Mapping group (Project AIM) at the NASA Goddard Space Flight Center Wallops Flight Fa...
International audienceThe airborne glacier and ice surface topography interferometer (GLISTIN-A) is ...
Alpine glaciers and perennial snowfields (G&PS) are important hydrologically and ecologically, provi...
As part of the NASA International Polar Year activities, a Ka-band cross-track interferometric synth...
The elevation of ice sheets changes due to climate change, and satellite altimetry is the preferred ...
Remotely sensed surface elevation datasets are key to study mass balance and dynamic behaviours of g...
The elevation of ice sheets changes due to climate change, and satellite altimetry is the preferred ...
Current understanding of glacier mass balance changes under changing climate is limited by scarcity ...
Space-based Interferometric Synthetic Aperture Radar (InSAR) applications have been widely used to m...
Global Land Ice Measurements from Space (GLIMS) is an international initiative to map the world’s gl...
In this study, we assess the accuracy and precision of digital elevation models (DEM) retrieved from...
Remotely sensed glaciological measurements can be expensive, often involving a trade-off between res...
A series of NASA airborne lidars have been used in support of satellite laser altimetry missions. Th...
The traditional method for interpolating ice thickness data from airborne radar sounding surveys ont...
Accelerating melt on the Greenland ice sheet leads to dramatic changes at a global scale. Especially...
The Arctic Ice Mapping group (Project AIM) at the NASA Goddard Space Flight Center Wallops Flight Fa...