[HTML][HTML] Brief communication: New radar constraints support presence of ice older than 1.5 Myr at Little Dome C

DA Lilien, D Steinhage, D Taylor, F Parrenin… - The …, 2021 - tc.copernicus.org
The area near Dome C, East Antarctica, is thought to be one of the most promising targets
for recovering a continuous ice-core record spanning more than a million years. The …

Stagnant ice and age modelling in the Dome C region, Antarctica

A Chung, F Parrenin, D Steinhage, R Mulvaney… - The …, 2023 - tc.copernicus.org
The European Beyond EPICA project aims to extract a continuous ice core of up to 1.5 Ma,
with a maximum age density of 20 kyr m− 1 at Little Dome C (LDC). We present a 1D …

[HTML][HTML] Investigating the internal structure of the Antarctic ice sheet: the utility of isochrones for spatiotemporal ice-sheet model calibration

J Sutter, H Fischer, O Eisen - The Cryosphere, 2021 - tc.copernicus.org
Ice-sheet models are a powerful tool to project the evolution of the Greenland and Antarctic
ice sheets and thus their future contribution to global sea-level changes. Testing the ability of …

Age, thinning and spatial origin of the Beyond EPICA ice from a 2.5 D ice flow model

A Chung, F Parrenin, R Mulvaney, L Vittuari… - …, 2024 - egusphere.copernicus.org
The European Beyond EPICA–Oldest Ice consortium is currently conducting an ice core
drilling project at Little Dome C (LDC) in Antarctica with the aim of retrieving a continuous ice …

Simulating the internal structure of the Antarctic Ice Sheet–towards a spatio-temporal calibration for ice-sheet modelling

J Sutter, H Fischer, O Eisen - The Cryosphere Discussions, 2020 - tc.copernicus.org
Ice Sheet Models are a powerful tool to project the evolution of the Greenland and Antarctic
Ice Sheets, and thus their future contribution to global sea-level changes. Probing the fitness …