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Temperate rainforests near the South Pole during peak Cretaceous warmth 期刊论文
NATURE, 2020, 580 (7801) : 81-+
作者:  Johann P. Klages;  Ulrich Salzmann;  Torsten Bickert;  Claus-Dieter Hillenbrand;  Karsten Gohl;  Gerhard Kuhn;  Steven M. Bohaty;  ;  rgen Titschack;  Juliane Mü;  ller;  Thomas Frederichs;  Thorsten Bauersachs;  Werner Ehrmann;  Tina van de Flierdt;  Patric Simõ;  es Pereira;  Robert D. Larter;  Gerrit Lohmann;  Igor Niezgodzki;  Gabriele Uenzelmann-Neben;  Maximilian Zundel;  Cornelia Spiegel;  Chris Mark;  David Chew;  Jane E. Francis;  Gernot Nehrke;  Florian Schwarz;  James A. Smith;  Tim Freudenthal;  Oliver Esper;  Heiko Pä;  like;  Thomas A. Ronge;  Ricarda Dziadek
收藏  |  浏览/下载:12/0  |  提交时间:2020/05/13

The mid-Cretaceous period was one of the warmest intervals of the past 140 million years(1-5), driven by atmospheric carbon dioxide levels of around 1,000 parts per million by volume(6). In the near absence of proximal geological records from south of the Antarctic Circle, it is disputed whether polar ice could exist under such environmental conditions. Here we use a sedimentary sequence recovered from the West Antarctic shelf-the southernmost Cretaceous record reported so far-and show that a temperate lowland rainforest environment existed at a palaeolatitude of about 82 degrees S during the Turonian-Santonian age (92 to 83 million years ago). This record contains an intact 3-metre-long network of in situ fossil roots embedded in a mudstone matrix containing diverse pollen and spores. A climate model simulation shows that the reconstructed temperate climate at this high latitude requires a combination of both atmospheric carbon dioxide concentrations of 1,120-1,680 parts per million by volume and a vegetated land surface without major Antarctic glaciation, highlighting the important cooling effect exerted by ice albedo under high levels of atmospheric carbon dioxide.


  
Ice front blocking of ocean heat transport to an Antarctic ice shelf 期刊论文
NATURE, 2020, 578 (7796) : 568-+
作者:  Alexandrov, Ludmil B.;  Kim, Jaegil;  Haradhvala, Nicholas J.;  Huang, Mi Ni;  Ng, Alvin Wei Tian;  Wu, Yang;  Boot, Arnoud;  Covington, Kyle R.;  Gordenin, Dmitry A.;  Bergstrom, Erik N.;  Islam, S. M. Ashiqul;  Lopez-Bigas, Nuria;  Klimczak, Leszek J.;  McPherson, John R.;  Morganella, Sandro;  Sabarinathan, Radhakrishnan;  Wheeler, David A.;  Mustonen, Ville;  Getz, Gad;  Rozen, Steven G.;  Stratton, Michael R.
收藏  |  浏览/下载:12/0  |  提交时间:2020/05/13

The front of the Getz Ice Shelf in West Antarctica creates an abrupt topographic step that deflects ocean currents, suppressing 70% of the heat delivery to the ice sheet.


Mass loss from the Antarctic Ice Sheet to the ocean has increased in recent decades, largely because the thinning of its floating ice shelves has allowed the outflow of grounded ice to accelerate(1,2). Enhanced basal melting of the ice shelves is thought to be the ultimate driver of change(2,3), motivating a recent focus on the processes that control ocean heat transport onto and across the seabed of the Antarctic continental shelf towards the ice(4-6). However, the shoreward heat flux typically far exceeds that required to match observed melt rates(2,7,8), suggesting that other critical controls exist. Here we show that the depth-independent (barotropic) component of the heat flow towards an ice shelf is blocked by the marked step shape of the ice front, and that only the depth-varying (baroclinic) component, which is typically much smaller, can enter the sub-ice cavity. Our results arise from direct observations of the Getz Ice Shelf system and laboratory experiments on a rotating platform. A similar blocking of the barotropic component may occur in other areas with comparable ice-bathymetry configurations, which may explain why changes in the density structure of the water column have been found to be a better indicator of basal melt rate variability than the heat transported onto the continental shelf(9). Representing the step topography of the ice front accurately in models is thus important for simulating ocean heat fluxes and induced melt rates.


  
Deep glacial troughs and stabilizing ridges unveiled beneath the margins of the Antarctic ice sheet 期刊论文
NATURE GEOSCIENCE, 2020, 13 (2) : 132-+
作者:  Morlighem, Mathieu;  Rignot, Eric;  Binder, Tobias;  Blankenship, Donald;  Drews, Reinhard;  Eagles, Graeme;  Eisen, Olaf;  Ferraccioli, Fausto;  Forsberg, Rene;  Fretwell, Peter;  Goel, Vikram;  Greenbaum, Jamin S.;  Gudmundsson, Hilmar;  Guo, Jingxue;  Helm, Veit;  Hofstede, Coen;  Howat, Ian;  Humbert, Angelika;  Jokat, Wilfried;  Karlsson, Nanna B.;  Lee, Won Sang;  Matsuoka, Kenichi;  Millan, Romain;  Mouginot, Jeremie;  Paden, John;  Pattyn, Frank;  Roberts, Jason;  Rosier, Sebastian;  Ruppel, Antonia;  Seroussi, Helene;  Smith, Emma C.;  Steinhage, Daniel;  Sun, Bo;  van den Broeke, Michiel R.;  van Ommen, Tas D.;  van Wessem, Melchior;  Young, Duncan A.
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/02
The local Last Glacial Maximum in McMurdo Sound, Antarctica: Implications for ice-sheet behavior in the Ross Sea Embayment 期刊论文
GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 2020, 132 (1-2) : 31-47
作者:  Christ, Andrew J.;  Bierman, Paul R.
收藏  |  浏览/下载:6/0  |  提交时间:2020/07/02
West Antarctic surface melt triggered by atmospheric rivers 期刊论文
NATURE GEOSCIENCE, 2019, 12 (11) : 911-+
作者:  Wille, Jonathan D.;  Favier, Vincent;  Dufour, Ambroise;  Gorodetskaya, Irina V.;  Turner, John;  Agosta, Cecile;  Codron, Francis
收藏  |  浏览/下载:6/0  |  提交时间:2020/02/16
Microphysics of summer clouds in central West Antarctica simulated by the Polar Weather Research and Forecasting Model (WRF) and the Antarctic Mesoscale Prediction System (AMPS) 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2019, 19 (19) : 12431-12454
作者:  Hines, Keith M.;  Bromwich, David H.;  Wang, Sheng-Hung;  Silber, Israel;  Verlinde, Johannes;  Lubin, Dan
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
Multidecadal observations of the Antarctic ice sheet from restored analog radar records 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (38) : 18867-18873
作者:  Schroeder, Dustin M.;  Dowdeswell, Julian A.;  Siegert, Martin J.;  Bingham, Robert G.;  Chu, Winnie;  MacKie, Emma J.;  Siegfried, Matthew R.;  Vega, Katherine I.;  Emmons, John R.;  Winstein, Keith
收藏  |  浏览/下载:12/0  |  提交时间:2019/11/27
Antarctica  radio echo sounding  glaciology  remote sensing  archival data  
West Antarctic ice loss influenced by internal climate variability and anthropogenic forcing 期刊论文
NATURE GEOSCIENCE, 2019, 12 (9) : 718-+
作者:  Holland, Paul R.;  Bracegirdle, Thomas J.;  Dutrieux, Pierre;  Jenkins, Adrian;  Steig, Eric J.
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
Slowdown in Antarctic mass loss from solid Earth and sea-level feedbacks 期刊论文
SCIENCE, 2019, 364 (6444) : 969-+
作者:  Larour, E.;  Seroussi, H.;  Adhikari, S.;  Ivins, E.;  Caron, L.;  Morlighem, M.;  Schlegel, N.
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/27
Ross Ice Shelf response to climate driven by the tectonic imprint on seafloor bathymetry 期刊论文
NATURE GEOSCIENCE, 2019, 12 (6) : 441-+
作者:  Tinto, K. J.;  39;Brien, G.
收藏  |  浏览/下载:0/0  |  提交时间:2019/11/26