International audienceAntarctic sea ice forms a critical part of the Southern Ocean and global climate system. The behaviour of Antarctic sea ice throughout the last glacial-interglacial (G-IG) cycle (12 000-130 000 years) allows us to investigate the interactions between sea ice and climate under a large range of mean climate states. Understanding both temporal and spatial variations in Antarctic sea ice across a G-IG cycle is crucial to a better understanding of the G-IG regulation of atmospheric CO 2 , ocean circulation, nutrient cycling and productivity. This study presents 28 published qualitative and quantitative estimates of G-IG sea ice from 24 marine sediment cores and an Antarctic ice core. Sea ice is reconstructed from the sedime...
Sea ice and dust flux increased greatly in the Southern Ocean during the last glacial period. Palaeo...
The reconstruction of past sea ice distribution in the Southern Ocean is crucial for an improved und...
The causes of the recent increase in Antarctic sea ice extent, characterised by large regional contr...
International audienceAntarctic sea ice forms a critical part of the Southern Ocean and global clima...
Antarctic sea ice forms a critical part of the Southern Ocean and global climate system. The behavio...
Antarctic sea ice forms a critical part of the Southern Ocean and global climate system. The behavio...
Antarctic sea-ice is a critical component of the climate system, an enhancer of glacial climate and,...
International audienceThe last glacial to interglacial transition was studied using down core record...
Diatom assemblages preserved in 18 sediment cores recovered in the eastern Indian, Atlantic and Paci...
[1] Recent modeling suggests that changes in Southern Ocean sea-ice extent potentially regulated the...
Sea ice and dust flux increased greatly in the Southern Ocean during the last glacial period. Palaeo...
Environmental conditions during Marine Isotope Stage (MIS) 5e (130-116 ka) represent an important "p...
Sea-ice growth and decay in Antarctica is one of the biggest seasonal changes on Earth, expanding ic...
The scarcity of paleoceanographic data from the Pacific Southern Ocean has hampered the understandin...
Sea ice and dust flux increased greatly in the Southern Ocean during the last glacial period. Palaeo...
The reconstruction of past sea ice distribution in the Southern Ocean is crucial for an improved und...
The causes of the recent increase in Antarctic sea ice extent, characterised by large regional contr...
International audienceAntarctic sea ice forms a critical part of the Southern Ocean and global clima...
Antarctic sea ice forms a critical part of the Southern Ocean and global climate system. The behavio...
Antarctic sea ice forms a critical part of the Southern Ocean and global climate system. The behavio...
Antarctic sea-ice is a critical component of the climate system, an enhancer of glacial climate and,...
International audienceThe last glacial to interglacial transition was studied using down core record...
Diatom assemblages preserved in 18 sediment cores recovered in the eastern Indian, Atlantic and Paci...
[1] Recent modeling suggests that changes in Southern Ocean sea-ice extent potentially regulated the...
Sea ice and dust flux increased greatly in the Southern Ocean during the last glacial period. Palaeo...
Environmental conditions during Marine Isotope Stage (MIS) 5e (130-116 ka) represent an important "p...
Sea-ice growth and decay in Antarctica is one of the biggest seasonal changes on Earth, expanding ic...
The scarcity of paleoceanographic data from the Pacific Southern Ocean has hampered the understandin...
Sea ice and dust flux increased greatly in the Southern Ocean during the last glacial period. Palaeo...
The reconstruction of past sea ice distribution in the Southern Ocean is crucial for an improved und...
The causes of the recent increase in Antarctic sea ice extent, characterised by large regional contr...