Pine Island Glacier (PIG) terminates in a rapidly melting ice shelf, and ocean circulation and temperature are implicated in the retreat and growing contribution to sea level rise of PIG and nearby glaciers. However, the variability of the ocean forcing of PIG has been poorly constrained due to a lack of multi-year observations. Here we show, using a unique record close to the Pine Island Ice Shelf (PIIS), that there is considerable oceanic variability at seasonal and interannual timescales, including a pronounced cold period from October 2011 to May 2013. This variability can be largely explained by two processes: cumulative ocean surface heat fluxes and sea ice formation close to PIIS; and interannual reversals in ocean currents and assoc...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
Pine Island Glacier has thinned and accelerated over recent decades, significantly contributing to g...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
Pine Island Glacier (PIG) terminates in a rapidly melting ice shelf, and ocean circulation and tempe...
Pine Island Glacier (PIG) terminates in a rapidly melting ice shelf, and ocean circulation and tempe...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
Pine Island Ice Shelf (PIIS) buttresses the Pine Island Glacier, the key contributor to sea-level ri...
Ocean-driven basal melting of Amundsen Sea ice shelves has triggered acceleration, thinning, and gro...
Ocean-driven basal melting of Amundsen Sea ice shelves has triggered acceleration, thinning, and gro...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
West Antarctic ice-shelf thinning is primarily caused by ocean-driven basal melting. Here we assess ...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
T.A.S., T.S., C.W., M.T., A.M., K.E.A., S.W.T., and E.P. thank the support from National Science Fou...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
Pine Island Glacier has thinned and accelerated over recent decades, significantly contributing to g...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
Pine Island Glacier (PIG) terminates in a rapidly melting ice shelf, and ocean circulation and tempe...
Pine Island Glacier (PIG) terminates in a rapidly melting ice shelf, and ocean circulation and tempe...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
Pine Island Ice Shelf (PIIS) buttresses the Pine Island Glacier, the key contributor to sea-level ri...
Ocean-driven basal melting of Amundsen Sea ice shelves has triggered acceleration, thinning, and gro...
Ocean-driven basal melting of Amundsen Sea ice shelves has triggered acceleration, thinning, and gro...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
We present subannual observations (2009–2014) of a major West Antarctic glacier (Pine Island Glacier...
West Antarctic ice-shelf thinning is primarily caused by ocean-driven basal melting. Here we assess ...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
T.A.S., T.S., C.W., M.T., A.M., K.E.A., S.W.T., and E.P. thank the support from National Science Fou...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...
Pine Island Glacier has thinned and accelerated over recent decades, significantly contributing to g...
Thinning ice in West Antarctica, resulting from acceleration in the flow of outlet glaciers, is at p...