Sediment cores located along the Eurasian continental margin (Arctic Ocean) have been studied to reconstruct the environmental changes in terms of waxing and waning of the Barents/Kara Sea ice-sheets, Atlantic water inflow, and sea-ice distribution over the last 150 kyr. The stratigraphy of the cores is based on stable oxygen isotopes, AMS 14C, and paleomagnetic data. We studied variations in marine and terrigenous input by a multiproxy approach, involving direct comparison of sedimentological and organo-geochemical data. Extensive episodes of northern Barents Sea ice-sheet growth during marine isotope stages (MIS) 6 and 2 have been supported by, at least, subsurface Atlantic water inflow, moisture-bearing storms, low summer insolation, and...
Three cores recovered off the northwest of Svalbard were studied with respect to glacial/interglacia...
Sediment core HLY0503-8JPC raised by the HOTRAX'05 expedition from the Mendeleev Ridge was analyzed ...
AbstractIn this study, Arctic Ocean patterns of deep water circulation and sediment provenance durin...
Ice-rafted debris (IRD) (>2 mm), input in eight sediment cores along the Eurasian continental margin...
The sediment composition of deep-sea cores from the central Arctic Ocean, the Fram Strait, and the Y...
On the basis of 52 sediment cores, analyzed and dated at high resolution, the paleoceanography and c...
The sediment composition of deep-sea cores from the central Arctic Ocean, the Fram Strait, and the Y...
The Arctic Ocean is one of the most climatically vulnerable areas on the planet, being a crossway of...
Stable oxygen and-carbon isotope and sedimentological-paleontological investigations supported by ac...
We investigated gravity core HH11‐09GC from 488 m water depth at the northern Svalbard margin in ord...
The Arctic and North Atlantic underwent significant climactic changes since the Last Glacial Maximum...
Coinciding with global warming, Arctic sea ice has rapidly decreased during the last four decades an...
The transition from last glacial to deglacial and subsequently to modern interglacial climate condit...
In this study, Arctic Ocean patterns of deep water circulation and sediment provenance during the La...
The recent dramatic decline of Arctic sea over the last decades and its controlling processes are st...
Three cores recovered off the northwest of Svalbard were studied with respect to glacial/interglacia...
Sediment core HLY0503-8JPC raised by the HOTRAX'05 expedition from the Mendeleev Ridge was analyzed ...
AbstractIn this study, Arctic Ocean patterns of deep water circulation and sediment provenance durin...
Ice-rafted debris (IRD) (>2 mm), input in eight sediment cores along the Eurasian continental margin...
The sediment composition of deep-sea cores from the central Arctic Ocean, the Fram Strait, and the Y...
On the basis of 52 sediment cores, analyzed and dated at high resolution, the paleoceanography and c...
The sediment composition of deep-sea cores from the central Arctic Ocean, the Fram Strait, and the Y...
The Arctic Ocean is one of the most climatically vulnerable areas on the planet, being a crossway of...
Stable oxygen and-carbon isotope and sedimentological-paleontological investigations supported by ac...
We investigated gravity core HH11‐09GC from 488 m water depth at the northern Svalbard margin in ord...
The Arctic and North Atlantic underwent significant climactic changes since the Last Glacial Maximum...
Coinciding with global warming, Arctic sea ice has rapidly decreased during the last four decades an...
The transition from last glacial to deglacial and subsequently to modern interglacial climate condit...
In this study, Arctic Ocean patterns of deep water circulation and sediment provenance during the La...
The recent dramatic decline of Arctic sea over the last decades and its controlling processes are st...
Three cores recovered off the northwest of Svalbard were studied with respect to glacial/interglacia...
Sediment core HLY0503-8JPC raised by the HOTRAX'05 expedition from the Mendeleev Ridge was analyzed ...
AbstractIn this study, Arctic Ocean patterns of deep water circulation and sediment provenance durin...