Understanding how ice sheets responded to past climate change is fundamental to forecasting how they will respond in the future. Numerical models calculating the evolution of ice sheets depend upon accumulation data, which are principally available from ice cores. Here, we calculate past rates of ice accumulation using internal layering. The englacial structure of the East Antarctic ice divide at ridge B is extracted from airborne ice-penetrating radar. The isochronous surfaces are dated at their intersection with the Vostok ice-core site, where the depth–age relationship is known. The dated isochrons are used as input to a one-dimensional ice-flow model to investigate the spatial accumulation distribution. The calculations show that ice-ac...
Ice sheets provide exceptional archives of past changes in polar climate, regional environment and g...
Results from ground-penetrating radar (GPR) measurements and shallow ice cores carried out during a ...
The West Antarctic Ice Sheet Divide Core (WDC) provided a high-resolution climate record from near t...
Understanding how ice sheets responded to past climate change is fundamental to forecasting how they...
In East Antarctica surface mass balance data can only be obtained from the sparselydistributed ice c...
In East Antarctica surface mass balance data can only be obtained from the sparsely distributed ice ...
In East Antarctica surface mass balance data can only be obtained from the sparsely distributed ice ...
Past rates of ice accumulation in central East Antarctica are defined poorly for the Last Glacial pe...
We reconstruct the pattern of surface accumulation in the region around Dome C, East Antarctica, sin...
International audienceWe reconstruct the pattern of surface accumulation in the region around Dome C...
Ice sheets provide exceptional archives of past changes in polar climate, regional environment and g...
The internal layering architecture of ice sheets, as detected with radio-echo sounding (RES), contai...
Constraining the stability of the East Antarctic Ice Sheet (EAIS) over glacial-interglacial timescal...
Ice sheets provide exceptional archives of past changes in polar climate, regional environment and g...
Results from ground-penetrating radar (GPR) measurements and shallow ice cores carried out during a ...
The West Antarctic Ice Sheet Divide Core (WDC) provided a high-resolution climate record from near t...
Understanding how ice sheets responded to past climate change is fundamental to forecasting how they...
In East Antarctica surface mass balance data can only be obtained from the sparselydistributed ice c...
In East Antarctica surface mass balance data can only be obtained from the sparsely distributed ice ...
In East Antarctica surface mass balance data can only be obtained from the sparsely distributed ice ...
Past rates of ice accumulation in central East Antarctica are defined poorly for the Last Glacial pe...
We reconstruct the pattern of surface accumulation in the region around Dome C, East Antarctica, sin...
International audienceWe reconstruct the pattern of surface accumulation in the region around Dome C...
Ice sheets provide exceptional archives of past changes in polar climate, regional environment and g...
The internal layering architecture of ice sheets, as detected with radio-echo sounding (RES), contai...
Constraining the stability of the East Antarctic Ice Sheet (EAIS) over glacial-interglacial timescal...
Ice sheets provide exceptional archives of past changes in polar climate, regional environment and g...
Results from ground-penetrating radar (GPR) measurements and shallow ice cores carried out during a ...
The West Antarctic Ice Sheet Divide Core (WDC) provided a high-resolution climate record from near t...