参考文献/References:
[1] RAISBECK G M, YIOU F, KLEVIN J, et al.Accelerator mass spectrometer measurement of cosmogenic 26Al in terrestrial and extraterrestrial matter [J].Nature, 1983, 301(5902): 690-692.
[2] ELMORE D, PHILLIPS F.Accelerator mass spectrometry for measurement of long-lived radioisotopes [J].Science, 1987, 236(4801): 543-550.
[3] GOSSE J C, PHILLIPS F M.Terrestrial in situ cosmogenic nuclides: theory and application [J].Quaternary Science Reviews, 2001, 20(14): 1475-1560.
[4] GRANGER D E, MUZIKAR P F.Dating sediment burial with in situ-produced cosmogenic nuclides: theory, techniques, and limitations [J].Earth and Planetary Science Letters, 2001, 188(1-2): 269-281.
[5] DUNAI T J.Cosmogenic nuclides: principles, concepts and applications in the earth surface sciences [M].Cambridge University Press, 2010: 1-133.
[6] MARRERO S M, PHILLIPS F M, BORCHERS B, et al.Cosmogenic nuclide systematics and the CRONUScalc program [J].Quaternary Geochronology, 2016, 31: 160-187.
[7] 周尚哲,许刘兵,Colgan P M,等.古乡冰期和白玉冰期的宇宙成因核素10Be定年 [J].科学通报,2007, 52(8):945-950.[ZHOU Shangzhe, XU Liubing, COLGAN P M, et a1.Cosmogenic 10Be dating of Guxiang and Baiyu glaciations [J].Chinese Science Bulletin,2007, 52(8):945-950.]
[8] BALCO G.Contributions and unrealized potential contributions of cosmogenic-nuclide exposure dating to glacier chronology, 1990-2010 [J].Quaternary Science Reviews, 2011, 30(1-2):3-27.
[9] HEYMAN J, STROEVEN A P, HARBOR J M, et al.Too young or too old: Evaluating cosmogenic exposure dating based on an analysis of compiled boulder exposure ages [J].Earth Planetary Science Letters, 2011, 302(1-2):71-80.
[10] WANG J, KASSAB C, HARBOR J M, et al.Cosmogenic nuclide constraints on late Quaternary glacial chronology on the Dalijia Shan, northeastern Tibetan Plateau [J].Quaternary Research, 2013, 79(3):439-451.
[11] 陈艺鑫,李英奎,张梅,等.昆仑山垭口地区“望昆冰期”冰碛宇宙成因核素10Be测年[J].冰川冻土,2011,33(1):101-109.[CHEN Yixin, LI Yingkui, ZHANG Mei, et al.Terrestrial Cosmogenic Nuclide10Be Exposure Ages of the Samples from Wangkun Till in the Kunlun Pass [J].Journal of glaciology and Geocryology, 2011, 33(1): 101-109.]
[12] OWEN L A, DORTCH J M.Nature and timing of Quaternary glaciation in the Himalayan–Tibetan orogeny [J].Quaternary Science Reviews, 2014, 88(88):14-54.
[13] 张威,刘亮,刘啸,等.秦岭“太白冰期”冰坎宇宙成因核素10Be定年[J].科学通报, 2014, 59(31):3086-3094.[ZHANG Wei, LIU Liang, LIU Xiao, et al.Cosmogenic nuclide 10Be dating of the glacial threshold of the “Taibai glaciation” in the Qinling Mountain range [J].Chinese Science Bulletin, 2014, 59(31): 3086–3094.]
[14] STOKES C R, TARASOV L, BLOMDIN R, et al.On the reconstruction of palaeo-ice sheets: Recent advances and future challenges [J].Quaternary Science Reviews, 2015, 125(1):15-49.
[15] PUTKONEN J, SWANSON T.Accuracy of cosmogenic ages for moraines[J].Quaternary Research, 2003, 59(2): 255-261.
[16] KAPLAN M R, CORONATO A, HULTON N R J, et al.Cosmogenic nuclide measurements in southernmost South America and implications for landscape change [J].Geomorphology, 2007, 87(4):284-301.
[17] 张志刚,徐孝彬,王建,等.青藏高原地区宇生核素暴露年代数据存在问题探讨[J].地质论评,2014,60(6):1359-1369.[ZHANG Zhigang, XU Xiaobin, WANG Jian, et al.Discussion of existing problems on the terrestrial cosmogenic nuclides exposure ages of Xi Zang(Tibetan)Plateau [J].Geological Review, 2014, 60(6):1359-1369.]
[18] 李吉均,姚檀栋,冯兆东.稻城古冰帽发育模式[C] // 青藏高原研究横断山考察专集(二).北京:北京科学技术出版社,1986:271.[LI Jijun, YAO Tandong, FENG Zhaodong.The development model of the Daocheng former ice cap[C]// Studies in Qinhai-Xizang(Tibet)plateau special issue of Hengduan Mountains Scientific expedition(2).Beijing: Beijing Science and Technology Press, 1986: 271.]
[19] 郑本兴,马秋华.川西稻城古冰帽的地貌特征与冰期探讨[J].冰川冻土,1995,17(1): 23-32.[ZHENG Benxing, MA Qiuhua.A study on the geomorphological characteristics and glaciations in Paleo-Daocheng Ice Cap, western Sichuan [J].Journal of Glaciology and Geocryology, 1995, 17(1): 23-32.]
[20] 许刘兵,周尚哲,崔建新,等.稻城冰帽区更新世冰川测年研究 [J].冰川冻土,2004,26(5):528-534.[XU Liubing, ZHOU Shangzhe, CUI Jianxin, et al.Dating of the Pleistocene Glaciations around the Daocheng Ice Cap [J].Journal of Glaciology and Geocryology, 2004, 26(5): 528-534.]
[21] 周尚哲,许刘兵,崔建新,等.沙鲁里山第四纪地貌发育与环境演变[J].科学通报,2004,49(23):2480-2484.[ZHOU Shangzhe, XU Liubing, CUI Jianxin, et a1.Geomorphologic evolution and environmental changes in the Shaluli Mountain region during the Quaternary [J].Chinese Science Bulletin.2004, 49(23):2480-2484.]
[22] XU Liubing, ZHOU Shangzhe.Quaternary glaciations recorded by glacial and fluvial landforms in the Shaluli Mountains, Southeastern Tibetan Plateau [J].Geomorphology, 2009, 103(2):268-275.
[23] 王建,RAISBECK G,徐孝彬,等.青藏高原东南部沙鲁里山南端第四纪冰川作用的10Be年代学研究[J].中国科学(D辑),2006,38(8):706-712.[WANG Jian, RAISBECK G, XU Xiaobin, et al.In situ cosmogenic 10Be dating of the Quaternary glaciations in the Southern Shaluli Mountain on the south Eastem Tibetan Plateau [J].Science in China(Series D),2006,38(8): 706-712.]
[24] FU Ping, STROEVEN A P, HARBOR J M, et al.Paleoglaciation of Shaluli Shan, southeastern Tibetan Plateau [J].Quaternary Science Reviews, 2013, 64(433):121-135.
[25] LAL D.Cosmic ray labeling of erosion surfaces: in situ nuclide production rates and erosion models [J].Earth & Planetary Science Letters, 1991, 104(91):424–439.
[26] CHMELEFF J, von BLANCKENBURG F, KOSSERT K, et al.Determination of the 10Be half-life by multicollector ICP-MS and liquid scintillation counting.Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 2010, 268(2): 192-199.
[27] KORSCHINEK G, BERGMAIER A, FAESTERMANN T, et al.A new value for the half-life of 10Be by heavyion elastic recoil detection and liquid scintillation counting.Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 2010, 268(2):187-191
[28] BROWN E T, EDMOND J M, RAISBECK G M, et al.Examination of surface exposure ages of Antarctic moraines using in situ produced 10Be and 26Al [J].Geochimica ET Cosmochimica Acta, 1991, 55(8): 2269-2283.
[29] BALCO G, STONE J O, LIFTON N A, et al.A complete and easily accessible means of calculating surface exposure ages or erosion rates from 10Be and 26Al measurements [J].Quaternary Geochronology, 2008, 3(3):174-195.
[30] NISHIIZUMI K, KOHL C P, ARNOLD J R, et al.Cosmic ray produced 10Be and 26Al in Antarctic rocks: exposure and erosion history [J].Earth & Planetary Science Letters, 1991, 104(2-4):440-454.
[31] KOHL C P, NISHIIZUMI K.Chemical isolation of quartz for measurement of in-situ, -produced cosmogenic nuclides [J].Geochimica Et Cosmochimica Acta, 1992, 56(9): 3583-3587.
[32] 徐孝彬,王建,陈仕涛.陆面岩石中形成的同位素10Be与26Al的试验室提取方法[J].南京师大学报,26(1):111-115.[XU Xiaobin, WANG Jian, CHEN Shitao.Samples selection in terrestrial cosmogenic isotopes dating and extraction of 10Be and 26A1 [J].Jourual of Nanjing Normal University(Natural Science), 2003, 26(1): 111-115.]
[33] 王建,YIOU F,RAISBECK G,等.用陆面岩石中生成的宇生同位素重建冰川漂砾运动历史的尝试[J].地质学报,2003, 77(3):407-413.[WANG Jian,YIOU F,RAISBECK G, et a1.Reconstructing the history of drift boulder's movement by using in situ cosmogonic isotopes [J].Acta Geologica Sinica, 2003, 77(3):407-413.]
[34] DUNNE J, ELMORE D, MUZIKAR P.Scaling factors for the rates of production of cosmogenic nuclides for geometric shielding and attenuation at depth on sloped surfaces [J].Geomorphology, 1999, 27(1-2):3-11.