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Roughness anisotropy calculated at flightline intersections of the 2018 and 2...
The Northeast Greenland Ice Stream (NEGIS) is an elongated feature extending ~600 km into the interior of the Greenland Ice Sheet. Here, we investigate detailed subglacial... -
Spatial topographic roughness (RMSh) for all along-flow flightlines of the be...
The Northeast Greenland Ice Stream (NEGIS) is an elongated feature extending ~600 km into the interior of the Greenland Ice Sheet. Here, we investigate detailed subglacial... -
Spatial topographic roughness (RMSh) for all across-flow flightlines of the b...
The Northeast Greenland Ice Stream (NEGIS) is an elongated feature extending ~600 km into the interior of the Greenland Ice Sheet. Here, we investigate detailed subglacial... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
Internal Reflection Horizon (IRH) in western Dronning Maud Land, East Antarct...
We present internal reflection horizons (IRHs) from airborne radar data in western Dronning Maud Land, East Antarctica. The IRHs were dated at the EDML ice core and IRH ages... -
ANT 2024/25: AWI airborne ultra-wideband radar data around Sør Rondane Mounta...
In the Antarctic austral summer season of 2024/25 AWI ultra-wideband (UWB) data was acquired across prominent ice-streams draining parts of the DML region as part of the CHARISO... -
ANT 2023/24: AWI airborne ultra-wideband radar data between Sør Rondane Mount...
In the Antarctic austral summer season of 2023/24 AWI ultra-wideband (UWB) data was acquired across prominent ice-streams draining parts of the DML region as part of the CHARISO... -
ARK 2018: AWI airborne ultra-wideband radar data at and upstream of 79°N Glac...
This dataset contains airborne radar data acquired using the AWIs multi-channel ultra-wideband radar system (AWI UWB) during the Arctic season of 2018. The profiles extend... -
ARK 2016: AWI airborne ultra-wideband radar data in Central-west and South-we...
This dataset contains airborne radar data acquired using the AWIs multi-channel ultra-wideband radar system (AWI UWB) during the Arctic season of 2016. The profiles extend... -
ARK 2022: AWI airborne ultra-wideband radar data covering englacial folds adj...
This dataset contains airborne radar data acquired using the AWIs multi-channel ultra-wideband radar system (AWI UWB) during the Arctic season of 2022. The profiles extend the... -
ARK 2022: AWI airborne ultra-wideband radar data over the central part of the...
This dataset contains airborne radar data acquired using the AWIs multi-channel ultra-wideband radar system (AWI UWB) during the Arctic season of 2022. The profiles extend the... -
ANT 2016/17: AWI airborne ultra-wideband radar data over the Jutulstraumen Gl...
This dataset contains airborne radar data acquired using the AWIs multi-channel ultra-wideband radar system (AWI UWB) during the Antarctic season of 2016/17. The profiles are... -
ARK 2018: AWI airborne ultra-wideband radar data over the shear margins at th...
This dataset contains airborne radar data acquired using the AWIs multi-channel ultra-wideband radar system (AWI UWB) during the Arctic season of 2018. The radar profiles cover...
