A detailed radiostratigraphic data set for the central East Antarctic Plateau spanning from the Holocene to the mid-Pleistocene
-
Published:2021-10-19
Issue:10
Volume:13
Page:4759-4777
-
ISSN:1866-3516
-
Container-title:Earth System Science Data
-
language:en
-
Short-container-title:Earth Syst. Sci. Data
Author:
Cavitte Marie G. P.ORCID, Young Duncan A.ORCID, Mulvaney RobertORCID, Ritz CatherineORCID, Greenbaum Jamin S., Ng Gregory, Kempf Scott D., Quartini Enrica, Muldoon Gail R., Paden JohnORCID, Frezzotti MassimoORCID, Roberts Jason L., Tozer Carly R., Schroeder Dustin M.ORCID, Blankenship Donald D.
Abstract
Abstract. We present an ice-penetrating radar data set which consists of 26 internal reflecting horizons (IRHs) that cover the entire Dome C area of the East Antarctic plateau, the most extensive to date in the region. This data set uses radar surveys collected over the space of 10 years, starting with an airborne international collaboration in 2008 to explore the region, up to the detailed ground-based surveys in support of the Beyond EPICA – Oldest Ice (BE-OI) European Consortium. Through direct correlation with the EPICA-DC ice core, we date 19 IRHs that span the past four glacial cycles, from 10 ka, beginning of the Holocene, to over 350 ka, ranging from 10 % to 83 % of the ice thickness at the EPICA-DC ice core site. We indirectly date and provide stratigraphic information for seven older IRHs using a 1D ice flow inverse model, going back to an estimated 700 ka. Depth and age uncertainties are quantified for all IRHs and provided as part of the data set.
The IRH data set presented in this study is available at the US Antarctic Program Data Center (USAP-DC) (https://doi.org/10.15784/601411, Cavitte et al., 2020) and represents a contribution to the SCAR AntArchitecture action group (AntArchitecture, 2017).
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences
Reference100 articles.
1. AntArchitecture: Archiving and interrogating Antarctica’s internal structure from radar sounding, in: Workshop to establish scientific goals, working practices, and funding routes, School of GeoSciences, University of Edinburgh, 18 and 19 July 2017, Final Report, 15 pp., 2017. a, b 2. Arcone, S. A., Jacobel, R., and Hamilton, G.: Unconformable stratigraphy in East Antarctica: Part I. Large firn cosets, recrystallized growth, and model evidence for intensified accumulation, J. Glaciol., 58, 240–252, https://doi.org/10.3189/2012JoJ11J044, 2012. a 3. Arnold, E., Leuschen, C., Rodriguez-Morales, F., Li, J., Paden, J., Hale, R., and Keshmiri, S.: CReSIS airborne radars and platforms for ice and snow sounding, Ann. Glaciol., 61, 58–67, https://doi.org/10.1017/aog.2019.37, 2020. a, b, c, d 4. Ashmore, D. W., Bingham, R. G., Ross, N., Siegert, M. J., Jordan, T. A., and Mair, D. W. F.: Englacial Architecture and Age-Depth Constraints Across the West Antarctic Ice Sheet, Geophys. Res. Lett., 47, e2019GL086663, https://doi.org/10.1029/2019GL086663, 2020. a 5. Barnes, P., Wolff, E. W., Mulvaney, R., Udisti, R., Castellano, E., Röthlisberger, R., and Steffensen, J.-P.: Effect of density on electrical conductivity of chemically laden polar ice, J. Geophys. Res., 107, 2029, https://doi.org/10.1029/2000JB000080, 2002. a, b
Cited by
12 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|