Atmospheric warming is increasing surface melting across the Antarctic Peninsula, with unknown impacts upon glacier dynamics at the ice-bed interface. Using high-resolution satellite-derived ice velocity data, optical satellite imagery and regional climate modelling, we show that drainage of surface meltwater to the bed of outlet glaciers on the Antarctic Peninsula occurs and triggers rapid ice flow accelerations (up to 100% greater than the annual mean). This provides a mechanism for this sector of the Antarctic Ice Sheet to respond rapidly to atmospheric warming. We infer that delivery of water to the bed transiently increases basal water pressure, enhancing basal motion, but efficient evacuation subsequently reduces water pressure causin...
Mass loss from the Antarctic Ice Sheet is dominated by ice dynamics, where ocean-driven melt leads t...
Surface melt and subsequent firn air depletion can ultimately lead to disintegration of Antarctic ic...
Ice flow along land-terminating margins of the Greenland Ice Sheet (GIS) varies considerably in resp...
Atmospheric warming is increasing surface melting across the Antarctic Peninsula, with unknown impac...
Surface meltwater drains across ice sheets, forming melt ponds that can trigger ice-shelf collapse, ...
Over the last half century, the Antarctic Peninsula (AP) has been among the most rapidly warming reg...
Accurate prediction of global sea-level rise requires that we understand the cause of recent, widesp...
Accurate prediction of global sea-level rise requires that we understand the cause of recent, widesp...
Over the past several decades marine-terminating glaciers on the Antarctic Peninsula have retreated,...
In the Amundsen sector of West Antarctica, the flow of glaciers accelerates when intrusion of warm o...
The concept that the Antarctic ice sheet changes with eternal slowness has been challenged by recent...
Basal ice-shelf melting is the key driver of Antarctica's increasing sea-level contribution. In dimi...
In the Amundsen sector of West Antarctica, the flow of glaciers accelerates when intrusion of warm o...
1999) is projected for the six SRES marker scenarios B1, B2, A1B, A1T, A2 and A1FI (Meehl et al. 200...
Surface melt and subsequent firn air depletion can ultimately lead to disintegration of Antarctic ic...
Mass loss from the Antarctic Ice Sheet is dominated by ice dynamics, where ocean-driven melt leads t...
Surface melt and subsequent firn air depletion can ultimately lead to disintegration of Antarctic ic...
Ice flow along land-terminating margins of the Greenland Ice Sheet (GIS) varies considerably in resp...
Atmospheric warming is increasing surface melting across the Antarctic Peninsula, with unknown impac...
Surface meltwater drains across ice sheets, forming melt ponds that can trigger ice-shelf collapse, ...
Over the last half century, the Antarctic Peninsula (AP) has been among the most rapidly warming reg...
Accurate prediction of global sea-level rise requires that we understand the cause of recent, widesp...
Accurate prediction of global sea-level rise requires that we understand the cause of recent, widesp...
Over the past several decades marine-terminating glaciers on the Antarctic Peninsula have retreated,...
In the Amundsen sector of West Antarctica, the flow of glaciers accelerates when intrusion of warm o...
The concept that the Antarctic ice sheet changes with eternal slowness has been challenged by recent...
Basal ice-shelf melting is the key driver of Antarctica's increasing sea-level contribution. In dimi...
In the Amundsen sector of West Antarctica, the flow of glaciers accelerates when intrusion of warm o...
1999) is projected for the six SRES marker scenarios B1, B2, A1B, A1T, A2 and A1FI (Meehl et al. 200...
Surface melt and subsequent firn air depletion can ultimately lead to disintegration of Antarctic ic...
Mass loss from the Antarctic Ice Sheet is dominated by ice dynamics, where ocean-driven melt leads t...
Surface melt and subsequent firn air depletion can ultimately lead to disintegration of Antarctic ic...
Ice flow along land-terminating margins of the Greenland Ice Sheet (GIS) varies considerably in resp...