Correction to “Volcanic forcing of climate over the past 1500 years: An improved ice core–based index for climate models”
暂无分享,去创建一个
[1] Craig T. Simmons,et al. [The effect of climate]. , 2021, La Pathologie generale.
[2] E. Mosley‐Thompson,et al. High Resolution Ice Core Records of Late Holocene Volcanism: Current and Future Contributions from the Greenland PARCA Cores , 2013 .
[3] J. Cole‐Dai,et al. The Number and Magnitude of Large Explosive Volcanic Eruptions Between 904 and 1865 A.D.: Quantitative Evidence from a New South Pole Ice Core , 2013 .
[4] John M. Wallace,et al. A large discontinuity in the mid-twentieth century in observed global-mean surface temperature , 2008, Nature.
[5] Paolo Cherubini,et al. On the 'Divergence Problem' in Northern Forests: A review of the tree-ring evidence and possible causes , 2008 .
[6] A. Robock,et al. Atmospheric volcanic loading derived from bipolar ice cores: Accounting for the spatial distribution of volcanic deposition , 2007 .
[7] F. Joos,et al. Solar influence on climate during the past millennium: Results from transient simulations with the NCAR Climate System Model , 2007, Proceedings of the National Academy of Sciences.
[8] T. Schneider. Climate modelling: uncertainty in climate-sensitivity estimates. , 2007, Nature.
[9] A. Robock,et al. The 1452 or 1453 A.D. Kuwae eruption signal derived from multiple ice core records : Greatest volcanic sulfate event of the past 700 years , 2006 .
[10] P. Mayewski,et al. A 12,000 Year Record of Explosive Volcanism in the Siple Dome Ice Core, West Antarctica , 2006 .
[11] S. Self,et al. The Kuwae (Vanuatu) eruption of AD 1452: potential magnitude and volatile release , 2006 .
[12] B. Santer,et al. Arctic Oscillation response to volcanic eruptions in the IPCC AR4 climate models , 2006 .
[13] G. Schmidt,et al. Sulfur, sea salt, and radionuclide aerosols in GISS ModelE , 2006 .
[14] A. Robock,et al. Climatic response to high‐latitude volcanic eruptions , 2005 .
[15] J. Lean,et al. Modeling the Sun’s Magnetic Field and Irradiance since 1713 , 2005 .
[16] B. Santer,et al. Effect of climate sensitivity on the Response to Volcanic Forcing , 2005 .
[17] Silvia Becagli,et al. Holocene volcanic history as recorded in the sulfate stratigraphy of the European Project for Ice Coring in Antarctica Dome C (EDC96) ice core , 2005 .
[18] A. Robock. Cooling following large volcanic eruptions corrected for the effect of diffuse radiation on tree rings , 2005 .
[19] S. Brönnimann,et al. Extreme climate of the global troposphere and stratosphere in 1940–42 related to El Niño , 2004, Nature.
[20] Stephen Self,et al. Magma volume, volatile emissions, and stratospheric aerosols from the 1815 eruption of Tambora , 2004 .
[21] Francis W. Zwiers,et al. Detectability of Anthropogenic Changes in Annual Temperature and Precipitation Extremes , 2004 .
[22] D. Dixon,et al. A 200 year sub-annual record of sulfate in West Antarctica, from 16 ice cores , 2004, Annals of Glaciology.
[23] Michael E. Mann,et al. Climate over past millennia , 2004 .
[24] S. Solanki,et al. Millennium-scale sunspot number reconstruction: evidence for an unusually active sun since the 1940s. , 2003, Physical review letters.
[25] A. Robock,et al. Spatial and temporal variability of the stratospheric aerosol cloud produced by the 1991 Mount Pinatubo eruption , 2003 .
[26] Charles S. Zender,et al. A monthly and latitudinally varying volcanic forcing dataset in simulations of 20th century climate , 2003 .
[27] Stephen Self,et al. Atmospheric and environmental effects of the 1783-1784 Laki eruption: A review and reassessment , 2003 .
[28] V. Ramaswamy,et al. Arctic Oscillation response to the 1991 Mount Pinatubo eruption: Effects of volcanic aerosols and ozone depletion , 2002 .
[29] A. Robock,et al. Lidar validation of SAGE II aerosol measurements after the 1991 Mount Pinatubo eruption , 2002 .
[30] J. Jouzel,et al. Eight centuries of volcanic signal and climate change at Talos Dome (East Antarctica) , 2002 .
[31] B. Bennett,et al. WORLDWIDE DISPERSION AND DEPOSITION OF RADIONUCLIDES PRODUCED IN ATMOSPHERIC TESTS , 2002, Health physics.
[32] M. Loutre,et al. Climate of the last millennium: a sensitivity study , 2002 .
[33] E. Mosley‐Thompson,et al. Hypothesized climate forcing time series for the last 500 years , 2001 .
[34] T. Wigley,et al. Interpretation of High Projections for Global-Mean Warming , 2001, Science.
[35] R. Röthlisberger,et al. Glacio-chemical study spanning the past 2 kyr on three ice cores from Dronning Maud Land, Antarctica: 1. Annually resolved accumulation rates , 2000 .
[36] S. Sommer,et al. Glacio-chemical study spanning the past 2 kyr on three ice cores from Dronning Maud Land, Antarctica 2. Seasonally resolved chemical records , 2000 .
[37] E. Mosley‐Thompson,et al. A 4100-year record of explosive volcanism from an East Antarctica ice core , 2000 .
[38] Crowley,et al. Atmospheric science: Methane rises from wetlands , 2011, Nature.
[39] A. Robock. Volcanic eruptions and climate , 2000 .
[40] J. Jouzel,et al. Solar irradiance during the last 1200 years based on cosmogenic nuclides , 2000 .
[41] Alan Robock,et al. Global warming in the context of the Little Ice Age , 1999 .
[42] Stanley C. Solomon,et al. Stratospheric ozone depletion: A review of concepts and history , 1999 .
[43] kwang-yul kim,et al. Modeling the temperature response to forced climate change over the last six centuries , 1999 .
[44] C. Timmreck,et al. Simulation of Mt. Pinatubo Volcanic Aerosol with the Hamburg Climate Model ECHAM4 , 1999 .
[45] P. Mayewski,et al. Spatial variability of climate and past atmospheric circulation patterns from central West Antarctic glaciochemistry , 1999 .
[46] M. Legrand,et al. Impact of the Cerro Hudson and Pinatubo volcanic eruptions on the Antarctic air and snow chemistry , 1999 .
[47] A. Robock,et al. Surface Air Temperature Simulations by AMIP General Circulation Models: Volcanic and ENSO Signals and Systematic Errors , 1998 .
[48] Larry W. Thomason,et al. Radiative forcing from the 1991 Mount Pinatubo volcanic eruption , 1998 .
[49] F. H. Schweingruber,et al. Influence of volcanic eruptions on Northern Hemisphere summer temperature over the past 600 years , 1998, Nature.
[50] P. Mayewski,et al. Assessment of the record of the 1982 El Chichón eruption as preserved in Greenland snow , 1997 .
[51] Dorthe Dahl-Jensen,et al. A comparison of the volcanic records over the past 4000 years from the Greenland Ice Core Project and Dye 3 , 1997 .
[52] A. Ansmann,et al. Evolution of the Pinatubo Aerosol: Raman Lidar Observations of Particle Optical Depth, Effective Radius, Mass, and Surface Area over Central Europe at 53.4°N , 1997 .
[53] E. Mosley‐Thompson,et al. Annually resolved southern hemisphere volcanic history from two Antarctic ice cores , 1997 .
[54] J. Hansen,et al. Radiative forcing and climate response , 1997 .
[55] A. King,et al. Petrology and sulfur and chlorine emissions of the 1963 eruption of Gunung Agung, Bali, Indonesia , 1996 .
[56] R. Garcia,et al. The role of aerosol variations in anthropogenic ozone depletion at northern midlatitudes , 1996 .
[57] R. Stothers. Major optical depth perturbations to the stratosphere from volcanic eruptions: Pyrheliometric period, 1881–1960 , 1996 .
[58] J. Lean,et al. Reconstruction of solar irradiance since 1610: Implications for climate change , 1995 .
[59] G. Zielinski. Stratospheric loading and optical depth estimates of explosive volcanism over the last 2100 years derived from the Greenland Ice Sheet Project 2 ice core , 1995 .
[60] C. Hammer,et al. A 10‐century comparison of prominent bipolar volcanic events in ice cores , 1995 .
[61] Arlin J. Krueger,et al. Volcanic sulfur dioxide measurements from the total ozone mapping spectrometer instruments , 1995 .
[62] A. Robock,et al. Ice cores as an index of global volcanism from 1850 to the present , 1995 .
[63] M. Baillie,et al. Evidence of the Eldgjá (Iceland) eruption in the GISP2 Greenland ice core: relationship to eruption processes and climatic conditions in the tenth century , 1995 .
[64] Jianping Mao,et al. The Volcanic Signal in Surface Temperature Observations. , 1995 .
[65] N. Reeh,et al. Holocene climatic records from Agassiz Ice Cap, Ellesmere Island, NWT, Canada , 1995 .
[66] R. Mcpeters. Reply to the Comment on the paper “The atmospheric SO2 budget for Pinatubo derived from NOAA‐11 SBUV/2 spectral data” , 1995 .
[67] P. Grootes,et al. Atmospheric Aerosol Loading and Transport Due to the 1783-84 Laki Eruption in Iceland, Interpreted from Ash Particles and Acidity in the GISP2 Ice Core , 1994, Quaternary Research.
[68] C. Trepte,et al. A climatology of stratospheric aerosol , 1994 .
[69] A J Gow,et al. Record of Volcanism Since 7000 B.C. from the GISP2 Greenland Ice Core and Implications for the Volcano-Climate System , 1994, Science.
[70] J. Hansen,et al. Stratospheric aerosol optical depths, 1850–1990 , 1993 .
[71] P. Mayewski,et al. Greenland Ice Core Greenland Ice Core "Signal" Characteristics: An Expanded View of Climate Change , 1993 .
[72] Jianping Mao,et al. Winter warming from large volcanic eruptions , 1992 .
[73] S. Kirchner,et al. 1000 years of explosive volcanism recorded at the South Pole , 1992 .
[74] T. Wigley,et al. Implications for climate and sea level of revised IPCC emissions scenarios , 1992, Nature.
[75] Makiko Sato,et al. Potential climate impact of Mount Pinatubo eruption , 1992 .
[76] Robert E. Veiga,et al. SAGE II measurements of early Pinatubo aerosols , 1992 .
[77] J. Moore,et al. A continuous 770‐year record of volcanic activity from east Antarctica , 1991 .
[78] P. Mayewski,et al. An ice-core record of atmospheric response to anthropogenic sulphate and nitrate , 1990, Nature.
[79] R. Turco,et al. Self-limiting physical and chemical effects in volcanic eruption clouds , 1989 .
[80] R. Bradley. The explosive volcanic eruption signal in northern hemisphere continental temperature records , 1988 .
[81] G. S. Kent,et al. Remote sensing of stratospheric aerosol following the eruption of El Chichón , 1988 .
[82] T. Wigley,et al. Thermal expansion of sea water associated with global warming , 1987, Nature.
[83] M. Legrand,et al. A 220-year continuous record of volcanic H2SO4 in the Antarctic ice sheet , 1987, Nature.
[84] J. Angell,et al. Surface Temperature Changes Following the Six Major Volcanic Episodes between 1780 and 1980 , 1985 .
[85] S. Schneider,et al. Volcanic, CO2 and solar forcing of Northern and Southern Hemisphere surface air temperatures , 1984, Nature.
[86] R. Stothers. The Great Tambora Eruption in 1815 and Its Aftermath , 1984, Science.
[87] M. McCormick,et al. Stratospheric aerosol mass and latitudinal distribution of the El Chichon eruption cloud for October 1982 , 1983 .
[88] S. Self,et al. Historic Eruptions of Tambora (1815), Krakatau (1883), and Agung (1963), their Stratospheric Aerosols, and Climatic Impact , 1982, Quaternary Research.
[89] S. Self,et al. The volcanic explosivity index (VEI) an estimate of explosive magnitude for historical volcanism , 1982 .
[90] A. Robock. A latitudinally dependent volcanic dust veil index, and its effect on climate simulations , 1981 .
[91] J. Pollack,et al. Atmospheric aerosols and climate , 1980 .
[92] W. Cleveland. Robust Locally Weighted Regression and Smoothing Scatterplots , 1979 .
[93] A. Robock. Internally and externally caused climate change , 1978 .
[94] C. Hammer. Past volcanism revealed by Greenland Ice Sheet impurities , 1977, Nature.
[95] B. Hicks,et al. Global spread of volcanic dust from the Bali eruption of 1963 , 1968 .
[96] Giorgio Fiocco,et al. Stratospheric aerosol layer during 1964 and 1965. , 1967 .
[97] W. J. Humphreys. Volcanic dust and other factors in the production of climatic changes, and their possible relation to ice ages , 1913 .
[98] H. Graf,et al. Volcanic effects on climate: revisiting the mechanisms , 2008 .
[99] W. Cleveland,et al. Locally Weighted Regression: An Approach to Regression Analysis by Local Fitting , 1988 .
[100] Fortunat Joos,et al. Solar activity during the last 1000 yr inferred from radionuclide records , 2007 .
[101] H. Oerter,et al. Spatio-temporal variability in volcanic sulphate deposition over the past 2 kyr in snow pits and firn cores from Amundsenisen, Antarctica , 2004, Journal of Glaciology.
[102] K. Briffa,et al. Large-scale temperature inferences from tree rings: a review , 2004 .
[103] V. Ramaswamy,et al. Arctic Oscillation response to the 1991 Pinatubo Eruption in the SKYHI GCM with a realistic Quasi-Biennial Oscillation , 2003 .
[104] P. Mayewski,et al. Antarctic volcanic flux ratios from Law Dome ice cores , 2002, Annals of Glaciology.
[105] S. Sommer,et al. Sulphate record from a northeast Greenland ice core over the last 1200 years based on continuous flow analysis , 2002, Annals of Glaciology.
[106] G. Zielinski. Use of paleo-records in determining variability within the volcanism climate system , 2000 .
[107] J. Grieser,et al. Parameterization of Spatio-temporal Patterns of Volcanic Aerosol Induced Stratospheric Optical Depth and its Climate Radiative Forcing , 1999 .
[108] A. Robock,et al. The volcanic record in ice cores for the past 2000 years , 1996 .
[109] C. Robin,et al. Kuwae (≈ 1425 A.D.): the forgotten caldera , 1994 .
[110] E. Mosley‐Thompson,et al. Climate of the last 500 years: High resolution ice core records , 1993 .
[111] A. Robock. The Volcanic Contribution to Climate Change of the Past 100 Years , 1991 .
[112] C. Hammer,et al. The Laki and Tambora Eruptions as Revealed in Greenland Ice Cores from 11 Locations , 1988, Annals of Glaciology.
[113] S. Johnsen,et al. Glaciological Investigations in the Crête Area, Central Greenland: A Search for a new Deep-Drilling Site , 1988, Annals of Glaciology.
[114] H. Clausen,et al. An Inter-Hemispheric Volcanic Time-Marker in Ice Cores from Greenland and Antarctica , 1988, Annals of Glaciology.
[115] David A. Fisher,et al. Stratigraphic Noise in Time Series Derived from Ice Cores , 1985, Annals of Glaciology.
[116] C. Hammer,et al. Acidity of Polar Ice Cores in Relation to Absolute Dating, Past Volcanism, and Radio–Echoes , 1980, Journal of Glaciology.
[117] M. McCormick,et al. Lidar measurements of two intense stratospheric dust layers , 1975 .
[118] J. M. Mitchell,et al. A Preliminary Evaluation of Atmospheric Pollution as a Cause of the Global Temperature Fluctuation of the Past Century , 1970 .
[119] H. Lamb,et al. Volcanic dust in the atmosphere; with a chronology and assessment of its meteorological significance , 1970, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[120] D. Stevenson,et al. Atmospheric Chemistry and Physics Atmospheric Impact of the 1783–1784 Laki Eruption: Part I Chemistry Modelling , 2003 .