The Western Arctic Ocean is a host to major ocean circulation systems, many of which generate eddies that can transport water masses and corresponding tracers over long distances from their formation sites. However, comprehensive observations of critical eddy characteristics are currently not available and are limited to spatially and temporally sparse in situ observations. Here we use high‐resolution spaceborne synthetic aperture radar measurements to detect eddies from their surface imprints in ice‐free sea surface roughness, and in sea ice patterns throughout marginal ice zones. We provide the first estimate of eddy characteristics extending over the seasonally ice‐free and marginal ice zone regions of the Western Arctic Ocean, including...
© 2020 American Meteorological Society. Observations of ocean currents in the Arctic interior show a...
Observations of ocean currents in the Arctic interior show a curious, and hitherto unexplained, vert...
Mesoscale eddies are important to many aspects of the dynamics of the Arctic Ocean. Among others, th...
The Western Arctic Ocean is a host to major ocean circulation systems, many of which generate eddies...
In the Arctic Ocean, the observation of mesoscale eddies is impeded by the presence of sea ice. To a...
Here we investigate the intensity of eddy generation and their properties in the marginal ice zone (...
International audienceIn the Arctic Ocean, the observation of mesoscale eddies is impeded by the pre...
The characteristic ice edge eddies in the Marginal Ice Zone (MIZ) are studied based on satellite inf...
In the Arctic Basin, the ocean dynamics at mesoscale and submesoscale under sea ice are poorly quant...
Mesoscale and submesoscale eddies play an important role in the distribution of heat and biogeochemi...
Mesoscale and submesoscale eddies play an important role in the distribution of heat and biogeochemi...
The significant reduction of the sea ice extent in the western Arctic has been observed by the susta...
© 2020 American Meteorological Society. Observations of ocean currents in the Arctic interior show a...
Observations of ocean currents in the Arctic interior show a curious, and hitherto unexplained, vert...
Mesoscale eddies are important to many aspects of the dynamics of the Arctic Ocean. Among others, th...
The Western Arctic Ocean is a host to major ocean circulation systems, many of which generate eddies...
In the Arctic Ocean, the observation of mesoscale eddies is impeded by the presence of sea ice. To a...
Here we investigate the intensity of eddy generation and their properties in the marginal ice zone (...
International audienceIn the Arctic Ocean, the observation of mesoscale eddies is impeded by the pre...
The characteristic ice edge eddies in the Marginal Ice Zone (MIZ) are studied based on satellite inf...
In the Arctic Basin, the ocean dynamics at mesoscale and submesoscale under sea ice are poorly quant...
Mesoscale and submesoscale eddies play an important role in the distribution of heat and biogeochemi...
Mesoscale and submesoscale eddies play an important role in the distribution of heat and biogeochemi...
The significant reduction of the sea ice extent in the western Arctic has been observed by the susta...
© 2020 American Meteorological Society. Observations of ocean currents in the Arctic interior show a...
Observations of ocean currents in the Arctic interior show a curious, and hitherto unexplained, vert...
Mesoscale eddies are important to many aspects of the dynamics of the Arctic Ocean. Among others, th...