the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Dating of a Dome Fuji (Antarctica) shallow ice core by volcanic signal synchronization with B32 and EDML1 chronologies
Abstract. We found extremely good synchronization of volcanic eruption signals between a shallow ice core drilled at Dome Fuji in 2001 (DF01 core) and the B32 shallow ice core from Dronning Maud Land, East Antarctica. We then applied volcanic signature matching to transfer the B32 chronology constructed by annual layer counting to a portion of the DF01 core for which annual layer counting was difficult because of the low precipitation rate. Matching was done by careful comparison of non-sea-salt sulfate (nssSO42−) data, which have a temporal resolution of about 1 yr, between the DF01 and B32 cores. The newly obtained chronology is called DFS1 (Dome Fuji Shallow ice core 1). In total, 31 volcanic eruptions were synchronized from AD 1900 back to AD 187, the earliest volcanic eruption date in the B32 core. The mean accumulation rate between synchronized volcanic horizons of the Dome Fuji core relative to rates at the B32 core drilling site did not differ significantly between these dates, increasing our confidence in this matching approach. We also used the B32-correlated EDML1/EDC3 chronology obtained from the top part of the EPICA Dronning Maud Land (DML) deep ice core to date a portion of the DF01 core. This new chronology, called DFS2 (Dome Fuji Shallow ice core 2), uses the correlations between B32 and EDML1/EDC3 ages to date the DF01 core from AD 1900 back to AD 199; moreover, four volcanic eruption dates from the EDML1/EDC3 chronology were used to date the interval from AD 199 back to AD 1. Because the EDML1/EDC3 ages were determined by adopting the B32 chronology back to AD 1170, DFS1 and DFS2 dates are identical between AD 1170 and 1900. These two methods enabled us to obtain a detailed chronology of the DF01 core, in particular the part before the last millennium, which has been difficult before this. We also present the absolute mean accumulation rates at Dome Fuji between AD 1 and 1900, based on the DFS1 and DFS2 chronologies.
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- RC C296: 'Review Motizuki et al.: Dating of a Dome Fuji (Antarctica) shallow ice core by volcanic signal synchronization with B32 and EDML1 chronologies', Anonymous Referee #1, 24 Mar 2014
- RC C309: 'review Dating of a Dome Fuji (Antarctica) shallow ice core by volcanic signal synchronization with B32 and EDML1 chronology ', Anonymous Referee #2, 25 Mar 2014
- RC C296: 'Review Motizuki et al.: Dating of a Dome Fuji (Antarctica) shallow ice core by volcanic signal synchronization with B32 and EDML1 chronologies', Anonymous Referee #1, 24 Mar 2014
- RC C309: 'review Dating of a Dome Fuji (Antarctica) shallow ice core by volcanic signal synchronization with B32 and EDML1 chronology ', Anonymous Referee #2, 25 Mar 2014
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Cited
9 citations as recorded by crossref.
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- Overview of the chemical composition and characteristics of Na<sup>+</sup> and Cl<sup>–</sup> distributions in shallow samples from Antarctic ice core DF01 (Dome Fuji) drilled in 2001 Y. Motizuki et al. 10.2343/geochemj.2.0458
- A global multiproxy database for temperature reconstructions of the Common Era J. Emile-Geay et al. 10.1038/sdata.2017.88
- Annually Resolved Profiles of δ34S and Sulfate in Shallow Ice Core DF01 (Dome Fuji, Antarctica) Spanning the Nineteenth Century and Their Geochemical Implications K. Takahashi et al. 10.1029/2021JD036137
- Cosmic ray event of A.D. 774-775 shown in quasi-annual10Be data from the Antarctic Dome Fuji ice core F. Miyake et al. 10.1002/2014GL062218
- Temporal variations of surface mass balance over the last 5000 years around Dome Fuji, Dronning Maud Land, East Antarctica I. Oyabu et al. 10.5194/cp-19-293-2023
- High‐sensitivity sulfur isotopic measurements for Antarctic ice core analyses K. Takahashi et al. 10.1002/rcm.8275