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South pole glacial climate reconstruction from multi-borehole laser particulate stratigraphyopen access

Authors
Aartsen, M.G.Abbasi, R.Abdou, Y.Ackermann, M.Adams, J.Aguilar, J.A.Ahlers, M.Altmann, D.Auffenberg, J.Bai, X.Baker, M.Barwick, S.W.Baum, V.Bay, R.Beatty, J.J.Bechet, S.Becker, K.-H.Tjus, J.B.Bell, M.Benabderrahmane, M.L.BenZvi, S.Berdermann, J.Berghaus, P.Berley, D.Bernardini, E.Bernhard, A.Bertrand, D.Besson, D.Z.Binder, G.Bindig, D.Bissok, M.Blaufuss, E.Blumenthal, J.Boersma, D.J.Bohaichuk, S.Bohm, C.Bose, D.Böser, S.Botner, O.Brayeur, L.Bretz, H.-P.Brown, A.M.Bruijn, R.Brunner, J.Carson, M.Casey, J.Casier, M.Cherwinka, J.Chirkin, D.Christov, A.Christy, B.Clark, K.Clevermann, F.Coenders, S.Cohen, S.Cowen, D.F.Silva, A.H.C.Danninger, M.Daughhetee, J.Davis, J.C.De, Clercq C.De, Ridder S.Desiati, P.De, With M.De, Young T.Díaz-Vélez, J.C.Dunkman, M.Eagan, R.Eberhardt, B.Eisch, J.Ellsworth, R.W.Euler, S.Evenson, P.A.Fadiran, O.Fazely, A.R.Fedynitch, A.Feintzeig, J.Feusels, T.Filimonov, K.Finley, C.Fischer-Wasels, T.Flis, S.Franckowiak, A.Franke, R.Frantzen, K.Fuchs, T.Gaisser, T.K.Gallagher, J.Gerhardt, L.Gladstone, L.Glüsenkamp, T.Goldschmidt, A.Golup, G.Gonzalez, J.G.Goodman, J.A.Góra, D.Grant, D.Groß, A.Gurtner, M.Ha, C.Ismail, A.H.Hallen, P.Hallgren, A.Halzen, F.Hanson, K.Heereman, D.Heinen, D.Helbing, K.Hellauer, R.Hickford, S.Hill, G.C.Hoffman, K.D.Hoffmann, R.Homeier, A.Hoshina, K.Huelsnitz, W.Hulth, P.O.Hultqvist, K.Hussain, S.Ishihara, A.Jacobi, E.Jacobsen, J.Jagielski, K.Japaridze, G.S.Jero, K.Jlelati, O.Kaminsky, B.Kappes, A.Karg, T.Karle, A.Kelley, J.L.Kiryluk, J.Kislat, F.Kläs, J.Klein, S.R.Köhne, J.-H.Kohnen, G.Kolanoski, H.Köpke, L.Kopper, C.Kopper, S.Koskinen, D.J.Kowalski, M.Krasberg, M.Krings, K.Kroll, G.Kunnen, J.Kurahashi, N.Kuwabara, T.Labare, M.Landsman, H.Larson, M.J.Lesiak-Bzdak, M.Leuermann, M.Leute, J.Lünemann, J.Madsen, J.Maruyama, R.Mase, K.Matis, H.S.McNally, F.Meagher, K.Merck, M.Mészáros, P.Meures, T.Miarecki, S.Middell, E.Milke, N.Miller, J.Mohrmann, L.Montaruli, T.Morse, R.Nahnhauer, R.Naumann, U.Niederhausen, H.Nowicki, S.C.Nygren, D.R.Obertacke, A.Odrowski, S.Olivas, A.Olivo, M.O'Murchadha, A.Paul, L.Pepper, J.A.De, Los Heros C.P.Pfendner, C.Pieloth, D.Pinat, E.Pirk, N.Posselt, J.Price, P.B.Przybylski, G.T.Rädel, L.Rameez, M.Rawlins, K.Redl, P.Reimann, R.Resconi, E.Rhode, W.Ribordy, M.Richman, M.Riedel, B.Rodrigues, J.P.Rott, C.Ruhe, T.Ruzybayev, B.Ryckbosch, D.Saba, S.M.Salameh, T.Sander, H.-G.Santander, M.Sarkar, S.Schatto, K.Scheel, M.Scheriau, F.Schmidt, T.Schmitz, M.Schoenen, S.Schöneberg, S.Schönwald, A.Schukraft, A.Schulte, L.Schulz, O.Seckel, D.Sestayo, Y.Seunarine, S.Sheremata, C.Smith, M.W.E.Soiron, M.Soldin, D.Spiczak, G.M.Spiering, C.Stamatikos, M.Stanev, T.Stasik, A.Stezelberger, T.Stokstad, R.G.Stößl, A.Strahler, E.A.Ström, R.Sullivan, G.W.Taavola, H.Taboada, I.Tamburro, A.Ter-Antonyan, S.Tešić, G.Tilav, S.Toale, P.A.Toscano, S.Tosi, D.Usner, M.Van, Der Drift D.Van, Eijndhoven N.Van, Overloop A.Van, Santen J.Vehring, M.Voge, M.Vraeghe, M.Walck, C.Waldenmaier, T.Wallraff, M.Wasserman, R.Weaver, C.Wellons, M.Wendt, C.Westerhoff, S.Whitehorn, N.Wiebe, K.Wiebusch, C.H.Williams, D.R.Wissing, H.Wolf, M.Wood, T.R.Woschnagg, K.Xu, C.Xu, D.L.Xu, X.W.Yanez, J.P.Yodh, G.Yoshida, S.Zarzhitsky, P.Ziemann, J.Zierke, S.Zilles, A.Zoll, M.
Issue Date
Jul-2013
Publisher
CAMBRIDGE UNIV PRESS
Citation
Journal of Glaciology, v.59, no.218, pp 1117 - 1128
Pages
12
Journal Title
Journal of Glaciology
Volume
59
Number
218
Start Page
1117
End Page
1128
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/64831
DOI
10.3189/2013JoG13J068
ISSN
0022-1430
1727-5652
Abstract
The IceCube Neutrino Observatory and its prototype, AMANDA, were built in South Pole ice, using powerful hot-water drills to cleanly bore > 100 holes to depths up to 2500 m. The construction of these particle physics detectors provided a unique opportunity to examine the deep ice sheet using a variety of novel techniques. We made high-resolution particulate profiles with a laser dust logger in eight of the boreholes during detector commissioning between 2004 and 2010. The South Pole laser logs are among the most clearly resolved measurements of Antarctic dust strata during the last glacial period and can be used to reconstruct paleoclimate records in exceptional detail. Here we use manual and algorithmic matching to synthesize our South Pole measurements with ice-core and logging data from Dome C, East Antarctica. We derive impurity concentration, precision chronology, annual-layer thickness, local spatial variability, and identify several widespread volcanic ash depositions useful for dating. We also examine the interval around ~74 ka recently isolated with radiometric dating to bracket the Toba (Sumatra) supereruption. © 2014 Publishing Technology.
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Ha, Changhyon
자연과학대학 (물리학과)
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