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| Interannual variability in Transpolar Drift summer sea ice thickness and potential impact of Atlantification [期刊论文] Cryosphere, 2021-01-01, 15 (6 Belter H.J.; Krumpen T.; Von Albedyll L.; Alekseeva T.A.; Birnbaum G.; Frolov S.V.; Hendricks S.; Herber A.; Polyakov I.; Raphael I.; Ricker R.; Serovetnikov S.S.; Webster M.; Haas C.
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| Two-dimensional impurity imaging in deep Antarctic ice cores: Snapshots of three climatic periods and implications for high-resolution signal interpretation [期刊论文] Cryosphere, 2021-01-01, 15 (7 Bohleber P.; Roman M.; Sala M.; Delmonte B.; Stenni B.; Barbante C.
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| Crystallographic analysis of temperate ice on Rhonegletscher, Swiss Alps [期刊论文] Cryosphere, 2021-01-01, 15 (2 Hellmann S.; Kerch J.; Weikusat I.; Bauder A.; Grab M.; Jouvet G.; Schwikowski M.; Maurer H.
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| Improved machine-learning-based open-water-sea-ice-cloud discrimination over wintertime Antarctic sea ice using MODIS thermal-infrared imagery [期刊论文] Cryosphere, 2021-01-01, 15 (3 Paul S.; Huntemann M.
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| A pole-to-equator ocean overturning circulation on Enceladus [期刊论文] Nature Geoscience, 2021-01-01, 14 (4 Lobo A.H.; Thompson A.F.; Vance S.D.; Tharimena S.
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| Global Coupled Climate Response to Polar Sea Ice Loss: Evaluating the Effectiveness of Different Ice-Constraining Approaches [期刊论文] Geophysical Research Letters, 2020-01-01, 47 (3 Sun L.; Deser C.; Tomas R.A.; Alexander M.
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| Relative contribution of mineral dust versus black carbon to Third Pole glacier melting [期刊论文] Atmospheric Environment, 2020-01-01, 223 Hu Z.; Kang S.; Li X.; Li C.; Sillanpää M.
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| Relative contribution of mineral dust versus black carbon to Third Pole glacier melting [期刊论文] Atmospheric Environment, 2020-01-01, 223 Hu Z.; Kang S.; Li X.; Li C.; Sillanpää M.
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| Early Last Interglacial ocean warming drove substantial ice mass loss from Antarctica [期刊论文] Proceedings of the National Academy of Sciences of the United States of America, 2020-01-01, 117 (8 Turney C.S.M.; Fogwill C.J.; Golledge N.R.; McKay N.P.; van Sebille E.; Jones R.T.; Etheridge D.; Rubino M.; Thornton D.P.; Davies S.M.; Ramsey C.B.; Thomas Z.A.; Bird M.I.; Munksgaard N.C.; Kohno M.; Woodward J.; Winter K.; Weyrich L.S.; Rootes C.M.; Millman H.; Albert P.G.; Rivera A.; van Ommen T.; Curran M.; Moy A.; Rahmstorf S.; Kawamura K.; Hillenbrand C.-D.; Weber M.E.; Manning C.J.; Young J.; Cooper A.
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| Early Last Interglacial ocean warming drove substantial ice mass loss from Antarctica [期刊论文] Proceedings of the National Academy of Sciences of the United States of America, 2020-01-01, 117 (8 Turney C.S.M.; Fogwill C.J.; Golledge N.R.; McKay N.P.; van Sebille E.; Jones R.T.; Etheridge D.; Rubino M.; Thornton D.P.; Davies S.M.; Ramsey C.B.; Thomas Z.A.; Bird M.I.; Munksgaard N.C.; Kohno M.; Woodward J.; Winter K.; Weyrich L.S.; Rootes C.M.; Millman H.; Albert P.G.; Rivera A.; van Ommen T.; Curran M.; Moy A.; Rahmstorf S.; Kawamura K.; Hillenbrand C.-D.; Weber M.E.; Manning C.J.; Young J.; Cooper A.
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