Cyclic changes of Asian monsoon intensity during the early mid-Holocene from annually-laminated stalagmites, central China
暂无分享,去创建一个
R. Edwards | H. Cheng | Yongjin Wang | X. Kong | Dianbing Liu | Hai Cheng | Hai Cheng
[1] Z. Liu,et al. Evolution and forcing mechanisms of El Niño over the past 21,000 years , 2014, Nature.
[2] H. Cheng,et al. Evidence for solar cycles in a late Holocene speleothem record from Dongge Cave, China , 2014, Scientific Reports.
[3] M. Tan. Circulation effect: response of precipitation δ18O to the ENSO cycle in monsoon regions of China , 2014, Climate Dynamics.
[4] R. Ganeshram,et al. Palaeoclimate reconstructions reveal a strong link between El Niño-Southern Oscillation and Tropical Pacific mean state , 2013, Nature Communications.
[5] Yongjin Wang,et al. Centennial-scale Asian Monsoon variability during the mid-Younger Dryas from Qingtian Cave, central China , 2013, Quaternary Research.
[6] G. Henderson,et al. Links between the East Asian monsoon and North Atlantic climate during the 8,200 year event , 2013 .
[7] G. Cabioch,et al. Early mid‐Holocene SST variability and surface‐ocean water balance in the southwest Pacific , 2012 .
[8] Hai Cheng,et al. Stable isotope and trace element investigation of two contemporaneous annually-laminated stalagmites from northeastern China surrounding the "8.2 ka event" , 2012 .
[9] H. Hercman,et al. MOD-AGE: An age-depth model construction algorithm , 2012 .
[10] J. Andrews,et al. Linking the 8.2 ka event and its freshwater forcing in the Labrador Sea , 2012 .
[11] T. Törnqvist,et al. Links between early Holocene ice-sheet decay, sea-level rise and abrupt climate change , 2012 .
[12] J. Lynch‐Stieglitz,et al. Solar forcing of Florida Straits surface salinity during the early Holocene , 2012 .
[13] R. Edwards,et al. The Global Paleomonsoon as seen through speleothem records from Asia and the Americas , 2012, Climate Dynamics.
[14] H. Oerter,et al. 9,400 years of cosmic radiation and solar activity from ice cores and tree rings , 2012, Proceedings of the National Academy of Sciences.
[15] D. Gavin,et al. Abrupt Holocene climate change and potential response to solar forcing in western Canada , 2011 .
[16] T. Marchitto,et al. Dynamical Response of the Tropical Pacific Ocean to Solar Forcing During the Early Holocene , 2010, Science.
[17] P. Huybers,et al. A test for the presence of covariance between time-uncertain series of data with application to the Dongge Cave speleothem and atmospheric radiocarbon records , 2010 .
[18] R. Edwards,et al. A high-resolution stalagmite record of the Holocene East Asian monsoon from Mt Shennongjia, central China , 2010 .
[19] S. Burns,et al. Timing and structure of the 8.2 kyr B.P. event inferred from δ18O records of stalagmites from China, Oman, and Brazil , 2009 .
[20] D. Raynaud,et al. Holocene thinning of the Greenland ice sheet , 2009, Nature.
[21] G. Meehl,et al. Amplifying the Pacific Climate System Response to a Small 11-Year Solar Cycle Forcing , 2009, Science.
[22] S. Yeh,et al. Decadal change in the relationship between east Asian–western North Pacific summer monsoons and ENSO in the mid‐1990s , 2008 .
[23] R. Edwards,et al. A detailed comparison of Asian Monsoon intensity and Greenland temperature during the Allerød and Younger Dryas events , 2008 .
[24] G. Schmidt,et al. Rapid early Holocene deglaciation of the Laurentide ice sheet , 2008 .
[25] C. Laj,et al. Reduced North Atlantic Deep Water Coeval with the Glacial Lake Agassiz Freshwater Outburst , 2008, Science.
[26] W. White,et al. Resonant excitation of the quasi-decadal oscillation by the 11-year signal in the Sun's irradiance , 2008 .
[27] R. Thunell,et al. Rapid sea level rise and ice sheet response to 8,200‐year climate event , 2007 .
[28] Trevor James Popp,et al. The 8.2 ka event from Greenland ice cores , 2007 .
[29] M. Chapman,et al. Surface and Deep Ocean Interactions During the Cold Climate Event 8200 Years Ago , 2006, Science.
[30] Andy Baker,et al. University of Birmingham Modification and preservation of environmental signals in speleothems , 2005 .
[31] D. Anderson,et al. Solar influence on the Indian summer monsoon during the Holocene , 2005 .
[32] R. Lawrence Edwards,et al. The Holocene Asian Monsoon: Links to Solar Changes and North Atlantic Climate , 2005, Science.
[33] Eelco J. Rohling,et al. Centennial-scale climate cooling with a sudden cold event around 8,200 years ago , 2005, Nature.
[34] P. Mayewski,et al. Holocene climate variability , 2004, Quaternary Research.
[35] S. Solanki,et al. Unusual activity of the Sun during recent decades compared to the previous 11,000 years , 2004, Nature.
[36] G. Haug,et al. Decline of surface temperature and salinity in the western tropical Pacific Ocean in the Holocene epoch , 2004, Nature.
[37] W. Peltier. GLOBAL GLACIAL ISOSTASY AND THE SURFACE OF THE ICE-AGE EARTH: The ICE-5G (VM2) Model and GRACE , 2004 .
[38] C. Laj,et al. Changes in the carbon cycle during the last deglaciation as indicated by the comparison of 10Be and 14C records , 2004 .
[39] Hai Cheng,et al. A high-resolution, absolute-dated Holocene and deglacial Asian monsoon record from Dongge Cave, China , 2003 .
[40] Y. Huang,et al. Cyclic Variation and Solar Forcing of Holocene Climate in the Alaskan Subarctic , 2003, Science.
[41] M. Siddall,et al. Sea-level fluctuations during the last glacial cycle , 2003, Nature.
[42] Manfred Mudelsee,et al. Holocene Forcing of the Indian Monsoon Recorded in a Stalagmite from Southern Oman , 2003, Science.
[43] Y. Rosenthal,et al. The amplitude and phasing of climate change during the last deglaciation in the Sulu Sea, western equatorial Pacific , 2003 .
[44] David M. Anderson,et al. Variability of El Niño/Southern Oscillation activity at millennial timescales during the Holocene epoch , 2002, Nature.
[45] S. B. Moran,et al. Uranium and thorium isotopic and concentration measurements by magnetic sector inductively coupled plasma mass spectrometry , 2002 .
[46] James T. Teller,et al. Freshwater outbursts to the oceans from glacial Lake Agassiz and their role in climate change during the last deglaciation , 2002 .
[47] Bin Wang,et al. Rainy Season of the Asian-Pacific Summer Monsoon(. , 2002 .
[48] Bernd Kromer,et al. Persistent Solar Influence on North Atlantic Climate During the Holocene , 2001, Science.
[49] Yemane Asmerom,et al. Late Holocene Climate and Cultural Changes in the Southwestern United States , 2001, Science.
[50] A. Matter,et al. Strong coherence between solar variability and the monsoon in Oman between 9 and 6 kyr ago , 2001, Nature.
[51] Bin Wang,et al. Pacific–East Asian Teleconnection: How Does ENSO Affect East Asian Climate? , 2000 .
[52] J. Andrews,et al. Forcing of the cold event of 8,200 years ago by catastrophic drainage of Laurentide lakes , 1999, Nature.
[53] Rajagopalan,et al. On the weakening relationship between the indian monsoon and ENSO , 1999, Science.
[54] J. W. Beck,et al. INTCAL98 Radiocarbon Age Calibration, 24,000–0 cal BP , 1998, Radiocarbon.
[55] Richard G. Fairbanks,et al. Interaction Between the ENSO and the Asian Monsoon in a Coral Record of Tropical Climate , 1997 .
[56] P. Mayewski,et al. Abrupt Early to Mid-Holocene climatic transition registered at the equator and the poles , 1997 .
[57] E. Bard,et al. Deglacial sea-level record from Tahiti corals and the timing of global meltwater discharge , 1996, Nature.
[58] J. Kutzbach,et al. Monsoon Climate of the Early Holocene: Climate Experiment with the Earth's Orbital Parameters for 9000 Years Ago , 1981, Science.
[59] André Berger,et al. Long-Term Variations of Caloric Insolation Resulting from the Earth's Orbital Elements , 1978, Quaternary Research.
[60] C. Hendy,et al. The isotopic geochemistry of speleothems—I. The calculation of the effects of different modes of formation on the isotopic composition of speleothems and their applicability as palaeoclimatic indicators , 1971 .