Glacial–interglacial dynamics of Antarctic firn columns: comparison between simulations and ice core air-δ 15 N measurements
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J. Jouzel | V. Masson‐Delmotte | M. Leuenberger | M. Debret | F. Parrenin | J. Chappellaz | R. Mulvaney | E. Capron | A. Landais | P. Martinerie | D. Buiron | F. Prié | A. Cauquoin
[1] J. Severinghaus,et al. Timing of Atmospheric CO2 and Antarctic Temperature Changes Across Termination III , 2003, Science.
[2] V. Masson‐Delmotte,et al. Warm climate isotopic simulations: what do we learn about interglacial signals in Greenland ice cores? , 2013 .
[3] J. Jouzel,et al. Synchronous Change of Atmospheric CO2 and Antarctic Temperature During the Last Deglacial Warming , 2013, Science.
[4] M. Loutre,et al. An optimized multi-proxy, multi-site Antarctic ice and gas orbital chronology (AICC2012): 120--800 ka , 2012 .
[5] L. Sime,et al. Recent Antarctic Peninsula warming relative to Holocene climate and ice-shelf history , 2012, Nature.
[6] V. Masson‐Delmotte,et al. Regional imprints of millennial variability during the MIS 3 period around Antarctica , 2012 .
[7] J. Jouzel,et al. On the gas-ice depth difference (Δdepth) along the EPICA Dome C ice core , 2012 .
[8] P. Clark,et al. Global warming preceded by increasing carbon dioxide concentrations during the last deglaciation , 2012, Nature.
[9] M. Frezzotti,et al. Interpreting last glacial to Holocene dust changes at Talos Dome (East Antarctica): implications for atmospheric variations from regional to hemispheric scales , 2012 .
[10] H. Fischer,et al. On the impact of impurities on the densification of polar firn , 2012 .
[11] H. Fischer,et al. Centennial mineral dust variability in high-resolution ice core data from Dome C, Antarctica , 2012 .
[12] N. Abram,et al. Environmental signals in a highly resolved ice core from James Ross Island, Antarctica , 2011 .
[13] V. Masson‐Delmotte,et al. The last deglaciation: timing the bipolar seesaw , 2011 .
[14] T. Stocker,et al. Expression of the bipolar see-saw in Antarctic climate records during the last deglaciation , 2011 .
[15] V. Masson‐Delmotte,et al. TALDICE-1 age scale of the Talos Dome deep ice core, East Antarctica , 2010 .
[16] R. Weiss,et al. Deep air convection in the firn at a zero-accumulation site, central Antarctica , 2010 .
[17] T. Stocker,et al. Glacial–interglacial and millennial-scale variations in the atmospheric nitrous oxide concentration during the last 800,000 years , 2010 .
[18] Eric Blayo,et al. Consistent dating for Antarctic and Greenland ice cores , 2010 .
[19] V. Masson‐Delmotte,et al. Synchronising EDML and NorthGRIP ice cores using δ18O of atmospheric oxygen (δ18Oatm) and CH4 measurements over MIS5 (80–123 kyr) , 2010 .
[20] J. Jouzel,et al. What drives the millennial and orbital variations of δ18Oatm , 2010 .
[21] J. Jouzel,et al. Firn processes and δ15N: potential for a gas-phase climate proxy , 2010 .
[22] R. Röthlisberger,et al. The deuterium excess records of EPICA Dome C and Dronning Maud Land ice cores (East Antarctica) , 2010 .
[23] L. Sime,et al. Evidence for warmer interglacials in East Antarctic ice cores , 2009, Nature.
[24] R. Beaudette,et al. Oxygen-18 of O2 Records the Impact of Abrupt Climate Change on the Terrestrial Biosphere , 2009, Science.
[25] D. Bromwich,et al. A Review of Antarctic Surface Snow Isotopic Composition : Observations, Atmospheric Circulation, and Isotopic Modeling , 2008 .
[26] T. Stocker,et al. High-resolution carbon dioxide concentration record 650,000–800,000 years before present , 2008, Nature.
[27] T. Stocker,et al. Orbital and millennial-scale features of atmospheric CH4 over the past 800,000 years , 2008, Nature.
[28] U. R S R U T H,et al. Proxies and Measurement Techniques for Mineral Dust in Antarctic Ice Cores , 2008 .
[29] F. Pattyn,et al. Historical droughts in Mediterranean regions during the last 500 years: a data/model approach , 2006 .
[30] J. Barnola,et al. New constraints on the gas age-ice age difference along the EPICA ice cores, 0-50 kyr , 2007 .
[31] Kenji Kawamura,et al. The EDC3 chronology for the EPICA Dome C ice core , 2007 .
[32] R. Röthlisberger,et al. Reconstruction of millennial changes in dust emission, transport and regional sea ice coverage using the deep EPICA ice cores from the Atlantic and Indian Ocean sector of Antarctica , 2007 .
[33] A. Schilt,et al. Orbital and Millennial Antarctic Climate Variability over the Past 800,000 Years , 2007, Science.
[34] H. Fischer,et al. Synchronisation of the EDML and EDC ice cores for the last 52 kyr by volcanic signature matching , 2007 .
[35] Zoe Courville,et al. Impacts of an accumulation hiatus on the physical properties of firn at a low-accumulation polar site , 2007 .
[36] Kenji Kawamura,et al. 1-D-ice flow modelling at EPICA Dome C and Dome Fuji, East Antarctica , 2007 .
[37] R. Hindmarsh,et al. Influence of a non-uniform velocity field on isochrone geometry along a steady flowline of an ice sheet , 2007, Journal of Glaciology.
[38] M. Bigler,et al. The Greenland Ice Core Chronology 2005, 15-42 ka. Part 2: comparison to other records , 2006 .
[39] Marie-Louise Siggaard-Andersen,et al. The Greenland Ice Core Chronology 2005, 15-42 ka. Part 1: constructing the time scale , 2006 .
[40] J. Jouzel,et al. Gas age–ice age differences and the chronology of the Vostok ice core, 0–100 ka , 2006 .
[41] J. Tison,et al. One-to-one coupling of glacial climate variability in Greenland and Antarctica. , 2006 .
[42] J. Severinghaus,et al. Convective mixing of air in firn at four polar sites , 2006 .
[43] T. Stocker,et al. Isotope calibrated Greenland temperature record over Marine Isotope Stage 3 and its relation to CH4 , 2006 .
[44] Gaël Durand,et al. Effect of impurities on grain growth in cold ice sheets , 2006 .
[45] D. Etheridge,et al. Firn-air δ15N in modern polar sites and glacial–interglacial ice: a model-data mismatch during glacial periods in Antarctica? , 2006 .
[46] J. Tison,et al. One-to-one coupling of glacial climate variability in Greenland during Ice Sheet Invasion , 2006 .
[47] Johannes Oerlemans,et al. Modelled atmospheric temperatures and global sea levels over the past million years , 2005, Nature.
[48] J. Jouzel,et al. A continuous record of temperature evolution over a sequence of Dansgaard‐Oeschger events during Marine Isotopic Stage 4 (76 to 62 kyr BP) , 2004 .
[49] J. Jouzel,et al. New modeling of the Vostok ice flow line and implication for the glaciological chronology of the Vostok ice core , 2004 .
[50] J Schwander,et al. High-resolution record of Northern Hemisphere climate extending into the last interglacial period , 2004, Nature.
[51] Kenji Kawamura,et al. Evidence for substantial accumulation rate variability in Antarctica during the Holocene, through synchronization of CO 2 in the Taylor Dome, Dome C and DML ice cores , 2004 .
[52] Carlo Barbante,et al. Eight glacial cycles from an Antarctic ice core , 2004, Nature.
[53] J. Schwander,et al. What was the surface temperature in central Antarctica during the last glacial maximum , 2004 .
[54] North Greenland Ice Core Project members. High-resolution record of Northern Hemisphere climate extending into the last interglacial period , 2004 .
[55] H. Oerter,et al. 8 glacial cycles from an Antarctic ice core , 2004 .
[56] T. V. van Ommen,et al. Deglacial and Holocene changes in accumulation at Law Dome, East Antarctica , 2004, Annals of Glaciology.
[57] C. Ritz,et al. Modeling the densification of polar firn including heat diffusion: Application to close‐off characteristics and gas isotopic fractionation for Antarctica and Greenland sites , 2003 .
[58] J. Jouzel,et al. Magnitude of isotope/temperature scaling for interpretation of central Antarctic ice cores , 2003 .
[59] Jiancheng Kang,et al. Timing of Atmospheric CO2 and Antarctic Temperature Changes Across Termination III , 2003, Science.
[60] Lorraine E. Lisiecki,et al. Application of dynamic programming to the correlation of paleoclimate records , 2002 .
[61] D. Peel,et al. 1000 year ice-core records from Berkner Island, Antarctica , 2002, Annals of Glaciology.
[62] J. Severinghaus,et al. Thermal fractionation of air in polar firn by seasonal temperature gradients , 2001 .
[63] Dorthe Dahl-Jensen,et al. Oxygen isotope and palaeotemperature records from six Greenland ice‐core stations: Camp Century, Dye‐3, GRIP, GISP2, Renland and NorthGRIP , 2001 .
[64] T. Stocker,et al. Atmospheric CO2 concentrations over the last glacial termination. , 2001, Science.
[65] 川村 賢二. Variations of atmospheric components over the past 340000 years from Dome Fuji deep ice core, Antarctica , 2001 .
[66] Paul Duval,et al. Physical modeling of the densification of snow/firn and ice in the upper part of polar ice sheets , 2000 .
[67] Smith,et al. Ice core records of atmospheric CO2 around the last three glacial terminations , 1999, Science.
[68] T. Stocker,et al. Asynchrony of Antarctic and Greenland climate change during the last glacial period , 1998, Nature.
[69] J. Severinghaus,et al. Timing of abrupt climate change at the end of the Younger Dryas interval from thermally fractionated gases in polar ice , 1998, Nature.
[70] J. Schwander,et al. Age scale of the air in the summit ice: Implication for glacial-interglacial temperature change , 1997 .
[71] P. Mayewski,et al. Climate correlations between Greenland and Antarctica during the past 100,000 years , 1994, Nature.
[72] B. Stauffer,et al. The age of the air in the firn and the ice at Summit, Greenland , 1993 .
[73] D. Raynaud,et al. δ15N of N2 in air trapped in polar ice: A tracer of gas transport in the firn and a possible constraint on ice age-gas age differences , 1992 .
[74] D. Raynaud,et al. Elemental and isotopic composition of occluded O2 and N2 in polar ice , 1989 .
[75] Michael M. Herron,et al. Firn Densification: An Empirical Model , 1980, Journal of Glaciology.