Rapid acceleration and retreat of Greenland's marine-terminating glaciers during the last two decades have initiated questions on the trigger and processes governing observed changes. Destabilization of these glaciers coincides with atmosphere and ocean warming, which broadly has been used to explain the rapid changes. To assess the relative role of external forcing versus fjord geometry, we investigate the retreat of Jakobshavn Isbræ in West Greenland, where margin positions exist since the Little Ice Age maximum in 1850. We use a one-dimensional ice flow model and isolate geometric effects on the retreat using a linear increase in external forcing. We find that the observed retreat of 43 km from 1850 until 2014 can only be simulated when ...
Tidewater glaciers in Greenland experienced widespread retreat during the last century. Information ...
Recent changes in the dynamics of Greenland's marine terminating outlet glaciers indicate a rapid an...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...
Rapid acceleration and retreat of Greenland's marine-terminating glaciers during the last two decade...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends,...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, whi...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, whi...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, whi...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends,...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, wh...
Marine outlet glaciers on Greenland are retreating, yet it is unclear if the recent fast retreat wil...
Since the 1980s, the Greenland ice sheet has been losing ice mass at an increased rate. Our current ...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...
Tidewater glaciers in Greenland experienced widespread retreat during the last century. Information ...
Tidewater glaciers in Greenland experienced widespread retreat during the last century. Information ...
Recent changes in the dynamics of Greenland's marine terminating outlet glaciers indicate a rapid an...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...
Rapid acceleration and retreat of Greenland's marine-terminating glaciers during the last two decade...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends,...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, whi...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, whi...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, whi...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends,...
Rapid retreat of Greenland's marine-terminating glaciers coincides with regional warming trends, wh...
Marine outlet glaciers on Greenland are retreating, yet it is unclear if the recent fast retreat wil...
Since the 1980s, the Greenland ice sheet has been losing ice mass at an increased rate. Our current ...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...
Tidewater glaciers in Greenland experienced widespread retreat during the last century. Information ...
Tidewater glaciers in Greenland experienced widespread retreat during the last century. Information ...
Recent changes in the dynamics of Greenland's marine terminating outlet glaciers indicate a rapid an...
Retreat of marine outlet glaciers often initiates depletion of inland ice through dynamic adjustment...