In this study we combine seismological and petrological models with satellite gravity gradient data to obtain the thermal and compositional structure of the Antarctic lithosphere. Our results indicate that Antarctica is largely in isostatic equilibrium, although notable anomalies exist. A new Antarctic Moho depth map is derived that fits the satellite gravity gradient anomaly field and is in good agreement with independent seismic estimates. It exhibits detailed crustal thickness variations also in areas of East Antarctica that are poorly explored due to sparse seismic station coverage. The thickness of the lithosphere in our model is in general agreement with seismological estimates, confirming the marked contrast between West Antarctica (...
Accurately monitoring and predicting the evolution of the West Antarctic Ice Sheet via secular chang...
As recovering the crust-mantle/Moho density contrast (MDC) significantly depends on the properties o...
As recovering the crust-mantle/Moho density contrast (MDC) significantly depends on the properties o...
In this study we combine seismological and petrological models with satellite gravity gradient data ...
The Antarctic continent is almost entirely ~99% covered by a thick ice layer impeding classical in-s...
The lithospheric structure of Antarctica is still under‐explored. Moho depth estimate studies are in...
The differing structural evolution of cratonic East Antarctica and younger West Antarctica has resul...
Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to uncer...
Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to uncer...
Accurately monitoring and predicting the evolution of the West Antarctic Ice Sheet via secular chang...
<p>Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to un...
Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to uncer...
The Antarctic continent, at 14 million km2, is larger than Australia; yet, due to the ice cover and ...
The Antarctic continent, at 14 million km2, is larger than Australia; yet, due to the ice cover and ...
5siWe create a 3-D density, temperature, and composition model of the Antarctic lithosphere using an...
Accurately monitoring and predicting the evolution of the West Antarctic Ice Sheet via secular chang...
As recovering the crust-mantle/Moho density contrast (MDC) significantly depends on the properties o...
As recovering the crust-mantle/Moho density contrast (MDC) significantly depends on the properties o...
In this study we combine seismological and petrological models with satellite gravity gradient data ...
The Antarctic continent is almost entirely ~99% covered by a thick ice layer impeding classical in-s...
The lithospheric structure of Antarctica is still under‐explored. Moho depth estimate studies are in...
The differing structural evolution of cratonic East Antarctica and younger West Antarctica has resul...
Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to uncer...
Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to uncer...
Accurately monitoring and predicting the evolution of the West Antarctic Ice Sheet via secular chang...
<p>Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to un...
Differences in predictions of Glacial Isostatic Adjustment (GIA) for Antarctica persist due to uncer...
The Antarctic continent, at 14 million km2, is larger than Australia; yet, due to the ice cover and ...
The Antarctic continent, at 14 million km2, is larger than Australia; yet, due to the ice cover and ...
5siWe create a 3-D density, temperature, and composition model of the Antarctic lithosphere using an...
Accurately monitoring and predicting the evolution of the West Antarctic Ice Sheet via secular chang...
As recovering the crust-mantle/Moho density contrast (MDC) significantly depends on the properties o...
As recovering the crust-mantle/Moho density contrast (MDC) significantly depends on the properties o...