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Sune O Rasmussen

Biographic Data

ID10711551
NAMESune O Rasmussen
GIVEN NAMESSune O
FAMILY NAMERasmussen
SIGNATURERASMUSSEN S O
AFFILIATIONSUniversity of Copenhagen
ORCID0000-0002-4177-3611
VERIFIEDNo
TOTAL WORKS13
TOTAL CITATIONS0
AUTHOR COUNT13
EDITOR COUNT0
FIRST PUBLICATION YEAR2006
LATEST PUBLICATION YEAR2018
H-INDEX0
  • Formal ratification of the subdivision of the Holocene Series/Epoch (Quaternary System/Period)

    Open Access•Mike Walker, Martin J Head et al.•ARTICLE•Episodes•2018

    Mike Walker, Martin J. Head, Max Berkelhammer, Svante Björck, Hai Cheng, Les Cwynar, David Fisher, Vasilios Gkinis, Antony Long, John Lowe, Rewi Newnham, Sune Olander Rasmussen, Harvey Weiss. Episodes 2018;41:213-23. https://doi.org/10.18814/epiiugs/2018/018016

  • A stratigraphic framework for abrupt climatic changes during the Last Glacial period based on three synchronized Greenland ice-core records

    Open Access•Sune O Rasmussen, Matthias Bigler et al.•ARTICLE•Quaternary Science Reviews•2014

    Due to their outstanding resolution and well-constrained chronologies, Greenland ice-core records provide a master record of past climatic changes throughout the Last Interglacial–Glacial cycle in the North Atlantic region. As part of the INTIMATE (INTegration of Ice-core, MArine and TErrestrial records) project, protocols have been proposed to ensure consistent and robust correlation between different records of past climate. A key element of th…

  • Synchronisation of palaeoenvironmental records over the last 60,000 years, and an extended Intimate event stratigraphy to 48,000 b2k

    Open Access•Simon Blockley, Simon P E Blockley et al.•ARTICLE•Quaternary Science Reviews•2012

  • Formal subdivision of the Holocene Series/Epoch

    Open Access•Mike Walker, M J C Walker et al.•ARTICLE•Journal of Quaternary Science•2012

    This discussion paper, by a Working Group of INTIMATE (Integration of ice‐core, marine and terrestrial records) and the Subcommision on Quaternary Stratigraphy (SQS) of the International Commission on Stratigraphy (ICS), considers the prospects for a formal subdivision of the Holocene Series/Epoch. Although previous attempts to subdivide the Holocene have proved inconclusive, recent developments in Quaternary stratigraphy, notably the definition …

  • Formal definition and dating of the GSSP (Global Stratotype Section and Point) for the base of the Holocene using the Greenland NGRIP ice core, and selected auxiliary records

    Open Access•Mike Walker, Sigfús Johnsen et al.•ARTICLE•Journal of Quaternary Science•2009

    The Greenland ice core from NorthGRIP (NGRIP) contains a proxy climate record across the Pleistocene–Holocene boundary of unprecedented clarity and resolution. Analysis of an array of physical and chemical parameters within the ice enables the base of the Holocene, as reflected in the first signs of climatic warming at the end of the Younger Dryas/Greenland Stadial 1 cold phase, to be located with a high degree of precision. This climatic event i…

  • A 60 000 year Greenland stratigraphic ice core chronology

    Open Access•Andreas Svensson, K K Andersen et al.•ARTICLE•Climate of the Past•2008

    The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is based on various records from the DYE-3, the GRIP, and the NorthGRIP ice cores, the glacial part is solely based on NorthGRIP records. Here we present an 18 ka extension of the time scale such that GICC05 continuously covers the past 60 ka. The new sectio…

  • Synchronisation of palaeoenvironmental events in the North Atlantic region during the Last Termination

    Open Access•J J Lowe, Sune O Rasmussen et al.•ARTICLE•Quaternary Science Reviews•2008

  • High-Resolution Greenland Ice Core Data Show Abrupt Climate Change Happens in Few Years

    Open Access•Jørgen Peder Steffensen, K K Andersen et al.•ARTICLE•Science•2008

    The last two abrupt warmings at the onset of our present warm interglacial period, interrupted by the Younger Dryas cooling event, were investigated at high temporal resolution from the North Greenland Ice Core Project ice core. The deuterium excess, a proxy of Greenland precipitation moisture source, switched mode within 1 to 3 years over these transitions and initiated a more gradual change (over 50 years) of the Greenland air temperature, as r…

  • Early Holocene climate oscillations recorded in three Greenland ice cores

    Open Access•Sune O Rasmussen, Bo Vinther et al.•ARTICLE•Quaternary Science Reviews•2007

  • A synchronized dating of three Greenland ice cores throughout the Holocene

    Open Access•Bo Vinther, B M Vinther et al.•ARTICLE•Journal of Geophysical Research:…•2006

    As part of the effort to create the new Greenland Ice Core Chronology 2005 (GICC05) a synchronized stratigraphical timescale for the Holocene parts of the DYE‐3, Greenland Ice Core Project (GRIP), and North Greenland Ice Core Project (NGRIP) ice cores is made by using volcanic reference horizons in electrical conductivity measurements to match the cores. The main annual layer counting is carried out on the most suited records only, exploiting tha…

  • The Greenland Ice Core Chronology 2005, 15–42ka. Part 1

    Open Access•K K Andersen, Andreas Svensson et al.•ARTICLE•Quaternary Science Reviews•2006

  • The Greenland Ice Core Chronology 2005, 15–42ka. Part 2

    Open Access•Andreas Svensson, Anders Svensson et al.•ARTICLE•Quaternary Science Reviews•2006

  • A new Greenland ice core chronology for the last glacial termination

    Open Access•Sune O Rasmussen, K K Andersen et al.•ARTICLE•Journal of Geophysical Research:…•2006

    We present a new common stratigraphic timescale for the North Greenland Ice Core Project (NGRIP) and GRIP ice cores. The timescale covers the period 7.9–14.8 kyr before present and includes the Bølling, Allerød, Younger Dryas, and early Holocene periods. We use a combination of new and previously published data, the most prominent being new high‐resolution Continuous Flow Analysis (CFA) impurity records from the NGRIP ice core. Several investigat…

No prominent works on this page.

  • A synchronized dating of three Greenland ice cores throughout the Holocene

    Open Access•Bo Vinther, B M Vinther et al.•ARTICLE•Journal of Geophysical Research:…•2006

    As part of the effort to create the new Greenland Ice Core Chronology 2005 (GICC05) a synchronized stratigraphical timescale for the Holocene parts of the DYE‐3, Greenland Ice Core Project (GRIP), and North Greenland Ice Core Project (NGRIP) ice cores is made by using volcanic reference horizons in electrical conductivity measurements to match the cores. The main annual layer counting is carried out on the most suited records only, exploiting tha…

  • The Greenland Ice Core Chronology 2005, 15–42ka. Part 1

    Open Access•K K Andersen, Andreas Svensson et al.•ARTICLE•Quaternary Science Reviews•2006

  • The Greenland Ice Core Chronology 2005, 15–42ka. Part 2

    Open Access•Andreas Svensson, Anders Svensson et al.•ARTICLE•Quaternary Science Reviews•2006

  • A new Greenland ice core chronology for the last glacial termination

    Open Access•Sune O Rasmussen, K K Andersen et al.•ARTICLE•Journal of Geophysical Research:…•2006

    We present a new common stratigraphic timescale for the North Greenland Ice Core Project (NGRIP) and GRIP ice cores. The timescale covers the period 7.9–14.8 kyr before present and includes the Bølling, Allerød, Younger Dryas, and early Holocene periods. We use a combination of new and previously published data, the most prominent being new high‐resolution Continuous Flow Analysis (CFA) impurity records from the NGRIP ice core. Several investigat…

  • Early Holocene climate oscillations recorded in three Greenland ice cores

    Open Access•Sune O Rasmussen, Bo Vinther et al.•ARTICLE•Quaternary Science Reviews•2007

  • A 60 000 year Greenland stratigraphic ice core chronology

    Open Access•Andreas Svensson, K K Andersen et al.•ARTICLE•Climate of the Past•2008

    The Greenland Ice Core Chronology 2005 (GICC05) is a time scale based on annual layer counting of high-resolution records from Greenland ice cores. Whereas the Holocene part of the time scale is based on various records from the DYE-3, the GRIP, and the NorthGRIP ice cores, the glacial part is solely based on NorthGRIP records. Here we present an 18 ka extension of the time scale such that GICC05 continuously covers the past 60 ka. The new sectio…

  • Synchronisation of palaeoenvironmental events in the North Atlantic region during the Last Termination

    Open Access•J J Lowe, Sune O Rasmussen et al.•ARTICLE•Quaternary Science Reviews•2008

  • High-Resolution Greenland Ice Core Data Show Abrupt Climate Change Happens in Few Years

    Open Access•Jørgen Peder Steffensen, K K Andersen et al.•ARTICLE•Science•2008

    The last two abrupt warmings at the onset of our present warm interglacial period, interrupted by the Younger Dryas cooling event, were investigated at high temporal resolution from the North Greenland Ice Core Project ice core. The deuterium excess, a proxy of Greenland precipitation moisture source, switched mode within 1 to 3 years over these transitions and initiated a more gradual change (over 50 years) of the Greenland air temperature, as r…

  • Formal definition and dating of the GSSP (Global Stratotype Section and Point) for the base of the Holocene using the Greenland NGRIP ice core, and selected auxiliary records

    Open Access•Mike Walker, Sigfús Johnsen et al.•ARTICLE•Journal of Quaternary Science•2009

    The Greenland ice core from NorthGRIP (NGRIP) contains a proxy climate record across the Pleistocene–Holocene boundary of unprecedented clarity and resolution. Analysis of an array of physical and chemical parameters within the ice enables the base of the Holocene, as reflected in the first signs of climatic warming at the end of the Younger Dryas/Greenland Stadial 1 cold phase, to be located with a high degree of precision. This climatic event i…

  • Synchronisation of palaeoenvironmental records over the last 60,000 years, and an extended Intimate event stratigraphy to 48,000 b2k

    Open Access•Simon Blockley, Simon P E Blockley et al.•ARTICLE•Quaternary Science Reviews•2012

  • Formal subdivision of the Holocene Series/Epoch

    Open Access•Mike Walker, M J C Walker et al.•ARTICLE•Journal of Quaternary Science•2012

    This discussion paper, by a Working Group of INTIMATE (Integration of ice‐core, marine and terrestrial records) and the Subcommision on Quaternary Stratigraphy (SQS) of the International Commission on Stratigraphy (ICS), considers the prospects for a formal subdivision of the Holocene Series/Epoch. Although previous attempts to subdivide the Holocene have proved inconclusive, recent developments in Quaternary stratigraphy, notably the definition …

  • A stratigraphic framework for abrupt climatic changes during the Last Glacial period based on three synchronized Greenland ice-core records

    Open Access•Sune O Rasmussen, Matthias Bigler et al.•ARTICLE•Quaternary Science Reviews•2014

    Due to their outstanding resolution and well-constrained chronologies, Greenland ice-core records provide a master record of past climatic changes throughout the Last Interglacial–Glacial cycle in the North Atlantic region. As part of the INTIMATE (INTegration of Ice-core, MArine and TErrestrial records) project, protocols have been proposed to ensure consistent and robust correlation between different records of past climate. A key element of th…

  • Formal ratification of the subdivision of the Holocene Series/Epoch (Quaternary System/Period)

    Open Access•Mike Walker, Martin J Head et al.•ARTICLE•Episodes•2018

    Mike Walker, Martin J. Head, Max Berkelhammer, Svante Björck, Hai Cheng, Les Cwynar, David Fisher, Vasilios Gkinis, Antony Long, John Lowe, Rewi Newnham, Sune Olander Rasmussen, Harvey Weiss. Episodes 2018;41:213-23. https://doi.org/10.18814/epiiugs/2018/018016

Geology (13 works) · Geology and Paleoclimatology Research (13 works) · Paleontology (12 works) · Ice core (10 works) · Climatology (9 works) · Geography (9 works) · Physical geography (8 works) · Chronology (7 works) · Cryospheric studies and observations (7 works) · Holocene (6 works)

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