Simulating ice core 10Be on the glacial–interglacial timescale

10Be ice core measurements are an important tool for paleoclimate research, e.g., allowing for the reconstruction of past solar activity or changes in the geomagnetic dipole field. However, especially on multi-millennial timescales, the share of production and climate-induced variations of respectiv...

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Published in:Climate of the Past
Main Authors: Elsässer, C., Wagenbach, D., Levin, I., Stanzick, A., Christl, M., Wallner, A., Kipfstuhl, S., Seierstad, I. K., Wershofen, H., Dibb, J.
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2018
Subjects:
geo
Online Access:https://doi.org/10.5194/cp-11-115-2015
https://cp.copernicus.org/articles/11/115/2015/
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spelling fttriple:oai:gotriple.eu:QFPe_ZSPg8ySQXREYFbPa 2023-05-15T16:27:45+02:00 Simulating ice core 10Be on the glacial–interglacial timescale Elsässer, C. Wagenbach, D. Levin, I. Stanzick, A. Christl, M. Wallner, A. Kipfstuhl, S. Seierstad, I. K. Wershofen, H. Dibb, J. 2018-09-27 https://doi.org/10.5194/cp-11-115-2015 https://cp.copernicus.org/articles/11/115/2015/ en eng Copernicus Publications doi:10.5194/cp-11-115-2015 10670/1.24ltw4 1814-9324 1814-9332 https://cp.copernicus.org/articles/11/115/2015/ undefined Geographica Helvetica - geography eISSN: 1814-9332 geo envir Text https://vocabularies.coar-repositories.org/resource_types/c_18cf/ Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 2018 fttriple https://doi.org/10.5194/cp-11-115-2015 2023-01-22T17:54:32Z 10Be ice core measurements are an important tool for paleoclimate research, e.g., allowing for the reconstruction of past solar activity or changes in the geomagnetic dipole field. However, especially on multi-millennial timescales, the share of production and climate-induced variations of respective 10Be ice core records is still up for debate. Here we present the first quantitative climatological model of the 10Be ice concentration up to the glacial–interglacial timescale. The model approach is composed of (i) a coarse resolution global atmospheric transport model and (ii) a local 10Be air–firn transfer model. Extensive global-scale observational data of short-lived radionuclides as well as new polar 10Be snow-pit measurements are used for model calibration and validation. Being specifically configured for 10Be in polar ice, this tool thus allows for a straightforward investigation of production- and non-production-related modulation of this nuclide. We find that the polar 10Be ice concentration does not immediately record the globally mixed cosmogenic production signal. Using geomagnetic modulation and revised Greenland snow accumulation rate changes as model input, we simulate the observed Greenland Summit (GRIP and GISP2) 10Be ice core records over the last 75 kyr (on the GICC05modelext timescale). We show that our basic model is capable of reproducing the largest portion of the observed 10Be changes. However, model–measurement differences exhibit multi-millennial trends (differences up to 87% in case of normalized to the Holocene records) which call for closer investigation. Focusing on the (12–37) b2k (before the year AD 2000) period, mean model–measurement differences of 30% cannot be attributed to production changes. However, unconsidered climate-induced changes could likely explain the model–measurement mismatch. In fact, the 10Be ice concentration is very sensitive to snow accumulation changes. Here the reconstructed Greenland Summit (GRIP) snow accumulation rate record would require revision of +28% ... Article in Journal/Newspaper Greenland GRIP ice core Unknown Greenland Climate of the Past 11 2 115 133
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic geo
envir
spellingShingle geo
envir
Elsässer, C.
Wagenbach, D.
Levin, I.
Stanzick, A.
Christl, M.
Wallner, A.
Kipfstuhl, S.
Seierstad, I. K.
Wershofen, H.
Dibb, J.
Simulating ice core 10Be on the glacial–interglacial timescale
topic_facet geo
envir
description 10Be ice core measurements are an important tool for paleoclimate research, e.g., allowing for the reconstruction of past solar activity or changes in the geomagnetic dipole field. However, especially on multi-millennial timescales, the share of production and climate-induced variations of respective 10Be ice core records is still up for debate. Here we present the first quantitative climatological model of the 10Be ice concentration up to the glacial–interglacial timescale. The model approach is composed of (i) a coarse resolution global atmospheric transport model and (ii) a local 10Be air–firn transfer model. Extensive global-scale observational data of short-lived radionuclides as well as new polar 10Be snow-pit measurements are used for model calibration and validation. Being specifically configured for 10Be in polar ice, this tool thus allows for a straightforward investigation of production- and non-production-related modulation of this nuclide. We find that the polar 10Be ice concentration does not immediately record the globally mixed cosmogenic production signal. Using geomagnetic modulation and revised Greenland snow accumulation rate changes as model input, we simulate the observed Greenland Summit (GRIP and GISP2) 10Be ice core records over the last 75 kyr (on the GICC05modelext timescale). We show that our basic model is capable of reproducing the largest portion of the observed 10Be changes. However, model–measurement differences exhibit multi-millennial trends (differences up to 87% in case of normalized to the Holocene records) which call for closer investigation. Focusing on the (12–37) b2k (before the year AD 2000) period, mean model–measurement differences of 30% cannot be attributed to production changes. However, unconsidered climate-induced changes could likely explain the model–measurement mismatch. In fact, the 10Be ice concentration is very sensitive to snow accumulation changes. Here the reconstructed Greenland Summit (GRIP) snow accumulation rate record would require revision of +28% ...
format Article in Journal/Newspaper
author Elsässer, C.
Wagenbach, D.
Levin, I.
Stanzick, A.
Christl, M.
Wallner, A.
Kipfstuhl, S.
Seierstad, I. K.
Wershofen, H.
Dibb, J.
author_facet Elsässer, C.
Wagenbach, D.
Levin, I.
Stanzick, A.
Christl, M.
Wallner, A.
Kipfstuhl, S.
Seierstad, I. K.
Wershofen, H.
Dibb, J.
author_sort Elsässer, C.
title Simulating ice core 10Be on the glacial–interglacial timescale
title_short Simulating ice core 10Be on the glacial–interglacial timescale
title_full Simulating ice core 10Be on the glacial–interglacial timescale
title_fullStr Simulating ice core 10Be on the glacial–interglacial timescale
title_full_unstemmed Simulating ice core 10Be on the glacial–interglacial timescale
title_sort simulating ice core 10be on the glacial–interglacial timescale
publisher Copernicus Publications
publishDate 2018
url https://doi.org/10.5194/cp-11-115-2015
https://cp.copernicus.org/articles/11/115/2015/
geographic Greenland
geographic_facet Greenland
genre Greenland
GRIP
ice core
genre_facet Greenland
GRIP
ice core
op_source Geographica Helvetica - geography
eISSN: 1814-9332
op_relation doi:10.5194/cp-11-115-2015
10670/1.24ltw4
1814-9324
1814-9332
https://cp.copernicus.org/articles/11/115/2015/
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op_doi https://doi.org/10.5194/cp-11-115-2015
container_title Climate of the Past
container_volume 11
container_issue 2
container_start_page 115
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