Nitrogen stable isotopes (δ15N) are used to study food web and foraging dynamics due to the step-wise enrichment of tissues with increasing trophic level, but they rely on the isoscape baseline that varies markedly in the Arctic due to the interplay between Atlantic- and Pacific-origin waters. Using a hierarchy of simulations with a state-of-the-art ocean-biogeochemical model, we demonstrate that the canonical isotopic gradient of 2-3‰ between the Pacific and Atlantic sectors of the Arctic Ocean has grown to 3-4‰ and will continue to expand under a high emissions climate change scenario by the end of the twenty-first century. δ15N increases in the Pacific-influenced high Arctic due to increased primary production, while Atlantic sector decr...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
The open ocean nitrogen cycle is being altered by increases in anthropogenic atmospheric nitrogen de...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
The Arctic is undergoing unprecedented environmental change. Rapid warming, decline in sea ice exten...
The dramatic loss of summer sea-ice impacts Arctic Ocean biological productivity through poorly unde...
AbstractThe hydrography of the Arctic Seas is being altered by ongoing climate change, with knock‐on...
The hydrography of the Arctic Seas is being altered by ongoing climate change, with knock-on effects...
We have reconstructed the surface water environment of the Arctic Ocean over the last ∼ 50,000 years...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
The open ocean nitrogen cycle is being altered by increases in anthropogenic atmospheric nitrogen de...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
Multiple environmental forcings, such as warming and changes in ocean circulation and nutrient suppl...
The Arctic is undergoing unprecedented environmental change. Rapid warming, decline in sea ice exten...
The dramatic loss of summer sea-ice impacts Arctic Ocean biological productivity through poorly unde...
AbstractThe hydrography of the Arctic Seas is being altered by ongoing climate change, with knock‐on...
The hydrography of the Arctic Seas is being altered by ongoing climate change, with knock-on effects...
We have reconstructed the surface water environment of the Arctic Ocean over the last ∼ 50,000 years...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...
The open ocean nitrogen cycle is being altered by increases in anthropogenic atmospheric nitrogen de...
International audienceThe open ocean nitrogen cycle is being altered by increases in anthropogenic a...