Sheng Yongping, Wang Guoya. Key findings and assessment results of IPCC WGI Fifth Assessment Report[J]. Journal of Glaciology and Geocryology, 2013, 35(5): 1068-1076. [沈永平, 王国亚. IPCC第一工作组第五次评估报告对全球气候变化认知的最新科学要点[J]. 冰川冻土, 2013, 35(5): 1068-1076.]
[2]
Qin Dahe, Plattner G K, Tignor M, et al. Climate change 2013: The physical science basis[M]. Cambridge, UK, and New York: Cambridge University Press, 2014.
[3]
Monaghan A J, Bromwich D H. Advances in describing recent Antarctic climate variablity[J]. Bulletin of the American Meteorological Society, 2008, 89(9): 1295-1306.
[4]
Naik S S, Thamban M, Laluraj C M, et al. A century of climate variability in central Dronning Maud Land, East Antarctica, and its relation to Southern Annular Mode and El Ni o-Southern Oscillation[J]. Journal of Geophysical Research: Atmospheres (1984 2012), 2010, 115(D16). doi:10.1029/2009JD013268.
[5]
Goodwin I D, De Angelis M, Pook M, et al. Snow accumulation variability in Wilkes Land, East Antarctica, and the relationship to atmospheric ridging in the 130 ~170 E region since 1930[J]. Journal of Geophysical Research: Atmospheres (1984 2012), 2003, 108(D21). doi:10.1029/2002JD002995.
[6]
Goodwin I D, Van Ommen T D, Curran M A J, et al. Mid latitude winter climate variability in the South Indian and southwest Pacific regions since 1300 AD[J]. Climate Dynamics, 2004, 22(8): 783-794.
[7]
Russell A, McGregor G R. Southern hemisphere atmospheric circulation: impacts on Antarctic climate and reconstructions from Antarctic ice core data[J]. Climatic Change, 2010, 99(1/2): 155-192.
[8]
Xiao Cunde, Mayewski P A, Qin Dahe, et al. Sea level pressure variability over the Southern Indian Ocean inferred from a glaciochemical record in Princess Elizabeth Land, East Antarctic[J]. Journal of Geophysical Research: Atmospheres (1984 2012), 2004, 109(D16). doi:10.1029/2003JD004065.
[9]
Liu Jingfeng, Xiao Cunde, Ding Minghu, et al. Observing and modeling the atmospheric water vapor isotopes in south hemisphere and their implication of water cycle[J]. Journal of Glaciology and Geocryology, 2014, 36(6): 1440-1449. [柳景峰, 效存德, 丁明虎, 等. 南极科考断面水汽同位素观测与模拟及其反映的水循环信息[J]. 冰川冻土, 2014, 36(6): 1440-1449.]
[10]
Reusch D B, Mayewski P A, Whitlow S I, et al. Spatial variability of climate and past atmospheric circulation patterns from central west Antarctic glaciochemistry[J]. Journal of Geophysical Research, 1999, 104(D6): 5985 6001.
[11]
Kreutz, K J, Mayewski P A, Pittalwala I I, et al. Sea level pressure variability in the Amundsen Sea region inferred from a West Antarctic glaciochemical record[J]. Journal of Geophysical Research: Atmospheres (1984 2012), 2000, 105(D3): 4047-4059.
[12]
Mayewski P A, Rohling E E, Curt Stager J, et al. Holocene climate variability[J]. Quaternary Research, 2004, 62(3): 243-255.
[13]
Russell A, McGregor G R, Marshall G J. 340 years of atmospheric circulation characteristics reconstructed from an eastern Antarctic Peninsula ice core[J]. Geophysical Research Letters, 2006, 33(8). doi:10.1029/2006GL025899.
[14]
Moy C M, Dunbar R B, Moreno P I, et al. Isotopic evidence for hydrologic change related to the westerlies in SW Patagonia, Chile, during the last millennium[J]. Quaternary Science Reviews, 2008, 27(13): 1335-1349.
[15]
Bertler N, Mayewski P A, Carter L. Cold conditions in Antarctica during the Little Ice Age: Implications for abrupt climate change mechanisms[J]. Earth and Planetary Science Letters, 2011, 308(1): 41-51.
[16]
Marshall G J. Trends in the Southern Annular Mode from observations and reanalyses[J]. Journal of Climate, 2003, 16(24): 4134-4143.
[17]
Goodwin I D, Mayewski P A. Multi-decadal climate variability in the western Pacific and Antarctic regions during the past 1500 years[J]. Quaternary International, 2007:167-168.
[18]
Thompson DW, Solomon S, Kushner P J, et al. Signatures of the Antarctic ozone hole in Southern Hemisphere surface climate change[J]. Nature Geoscience, 2011, 4(11): 741-749.
[19]
Arblaster J M, Meehl G A. Contributions of external forcings to southern annular mode trends[J]. Journal of Climate, 2006, 19(12):2896-2905.
[20]
Thompson D W, Wallace J M. Annular modes in the extratropical circulation, Part I: month-to-month variability[J]. Journal of Climate 2000, 13(5): 1000-1016.
[21]
Van Den Broeke M R. On the interpretation of Antarctic temperature[J]. Journal of Climate, 2000, 13(21): 3885-3889.
[22]
Van Loon H. The half-yearly oscillations in middle and high southern latitudes and the coreless winter[J]. Journal of the atmospheric sciences, 1967, 24(5): 472-486.
[23]
Wang Duomin, Yang Zongying, Li Chunxiao, et al. Variation characteristics of the meteorological elements during the polar day in Zhongshan Station, Antarctica[J]. Journal of Glaciology and Geocryology, 2013, 35(5): 1112-1117. [王多民, 杨宗英, 李春筱, 等. 南极中山站极昼期间气象要素变化特征[J]. 冰川冻土, 2013, 35(5): 1112-1117.]
[24]
Van Den Broeke M R. The semiannual oscillation and Antarctic part 1: influence on near surface temperatures (1957-79)[J]. Antarctic Science, 1998, 10(02): 175-183.
[25]
Meehl G A. A reexamination of the mechanism of the semiannual oscillation in the Southern Hemisphere[J]. Journal of Climate, 1991, 4(9): 911-926.
[26]
Morgan V M, Goodwin I D, Etheridge D M, et al. Evidence from Antarctic ice cores for recent increases in snow accumulation[J]. Nature, 1991, 354: 58-60. doi:10.1038/354058a0.
[27]
Ren Jiawen, Qin Dahe, Xiao Cunde, et al. Comparison of ice-core records of climatic change over past centuries in Antarctica.[J]. Journal of Glaciology and Geocryology, 2002, 24(5): 484-491. [任贾文, 秦大河, 效存德, 等. [南极地区数百年来气候变化的冰芯记录对比研究[J]. 冰川冻土, 2002, 24(5): 484-491.]
[28]
Li Runxiang, Xiao Cunde, Sneed S B, et al. A continuous 293-year record of volcanic events in an ice core from Lambert Glacier basin, East Antarctica[J]. Antarctic Science, 2012, 24(03): 293-298.
[29]
Bromwich D H, Nicolas J P, Monaghan A J. An assessment of precipitation changes over Antarctica and the Southern Ocean since 1989 in contemporary global reanalyses[J]. Journal of Climate, 2011, 24(16): 4189-4209.
[30]
Nan Sulan, Li Jianping. The relationship between the summer precipitation in the Yangtze River valley and the boreal spring Southern Hemisphere annular mode[J]. Geophysical Research Letters, 2003, 30(24). doi:10.1029/2003GL018381.
[31]
Reijmer C H, Van Den Broeke M R, Scheele M P. Air parcel trajectories and snowfall related to five deep drilling locations in Antarctica based on the ERA-15 dataset[J]. Journal of Climate, 2002, 15(14): 1957-1968.
[32]
Helsen M M, Van de Wal R, Van Den Broeke M R, et al. Modelling the isotopic composition of snow using backward trajectories: A particular precipitation event in DronningMaud Land[J]. Antarctica. Annals of Glaciology, 2004, 39(1): 293-299.
[33]
Suzuki K, Yamanouchi T, Kawamura K., et al. The spatial and seasonal distributions of air-transport origins to the Antarctic based on 5-day backward trajectory analysis[J]. Polar Science, 2013, 7(3): 205-213.
[34]
Qin Dahe, Xiao Cunde, Allison I, et al. Snow surface height variations on the Antarctic ice sheet in Princess Elizabeth Land, Antarctica: 1 year of data from an automatic weather station[J]. Annals of Glaciology, 2004, 39(1): 181-187.
[35]
Ding Minghu, Xiao Cunde, Li Yuansheng, et al. Spatial variability of surface mass balance along a traverse route from Zhongshan station to Dome A[J]. Journal of Glaciology, 2011, 57(204): 658-666.
[36]
Chen Zhigang, Bian Lingen, Xiao Cunde, et al. Seasonal variations of the near surface layer parameters over the Antarctic ice sheet in Princess Elizabeth Land, East Antarctica[J]. Chinese Journal of Polar Science, 2007, 18(2): 122-134.
[37]
Ma Yongfeng, Bian Lingen, Xiao Cunde, et al. Near surface climate of the traverse route from Zhongshan Station to Dome A, East Antarctica[J]. Antarctic Science, 2010, 22(4): 443-459.
[38]
Xiao Cunde, Qin Dahe, Bian Lingen. A precise monitoring of snow surface height in the region of Lambert Glacier basin-Amery Ice Shelf, East Antarctica[J]. Science in China Series D: Earth Sciences, 2005, 48(1): 100-111. [效存德, 秦大河, 卞林根, 等. 东南极Lambert冰盆-Amery冰架区域雪面相对高程变化的精确监测[J]. 中国科学D辑: 地球科学, 2004, 34(7): 675-685.]
[39]
Simmonds I, Keay K. Mean Southern Hemisphere extratropical cyclone behavior in the 40-year NCEP-NCAR reanalysis[J]. Journal of Climate, 2000, 13(5): 873-885.
[40]
Bian Lingen, Lin Xuechun. Interdecadal change of the Antarctic oscillation and the Antarctic circumpolar wave[J]. Chinese Journal of Atmospheric Sciences (in Chinese), 2009, 33(2): 251-260. [卞林根, 林学椿. 南极涛动和南极绕极波的年代际变化[J]. 大气科学, 2009, 33(2): 251-260.]
[41]
Lin Xiang, Bian Lingen. Characteristics of the Antarctic circumpolar wave during recent 100 years[J]. Climatic and Environmental Research, 2015, 20(1): 21-29. [林祥, 卞林根. 近百年来的南极绕极波变化特征[J]. 气候与环境研究, 2015, 20(1): 21-29.]
[42]
Becagli S, Castellano E, Cerri O, et al. Methanesulphonic acid (MSA) stratigraphy from a Talos Dome ice core as a tool in depicting sea ice changes and southern atmospheric circulation over the previous 140 years[J]. Atmospheric Enviroment, 2009, 43(5): 1051-1058.