IODP Expedition 382: Supplementary Tables for "New magnetostratigraphic insights from Iceberg Alley on the rhythms of Antarctic climate during the Plio-Pleistocene"
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- Reilly, Brendan
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- Tauxe, Lisa
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- Maureen Raymo
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- Ian Bailey
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- Sidney Hemming
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- Michael Weber
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- Trevor Williams
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- Marga Garcia
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- Michelle Guitard
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- Yasmina Martos
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- Lara Pérez
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- Xufeng Zheng
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- Linda Armbrecht
- 作成者
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- Zhiheng Du
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- Gerson Fauth
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- Anna Glueder
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- Marcus Gutjahr
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- Frida Hoem
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- Ji-Hwan Hwang
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- Mutsumi Iizuka
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- Yuji Kato
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- Bridget Kenlee
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- Victoria Peck
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- Thomas Ronge
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- Osamu Seki
- 作成者
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- Shubham Tripathi
- 作成者
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- Jonathan Warnock
- 作成者
メタデータ
- 公開日
- 2020-12-22
- DOI
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- 10.5281/zenodo.3776572
- 10.5281/zenodo.3776573
- 公開者
- Zenodo
- データ作成者 (e-Rad)
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- Reilly, Brendan
- Tauxe, Lisa
- Brachfeld, Stefanie
- Maureen Raymo
- Ian Bailey
- Sidney Hemming
- Michael Weber
- Trevor Williams
- Marga Garcia
- Michelle Guitard
- Yasmina Martos
- Lara Pérez
- Xufeng Zheng
- Linda Armbrecht
- Fabricio Cardillo
- Zhiheng Du
- Gerson Fauth
- Anna Glueder
- Marcus Gutjahr
- Iván Hernández-Almeida
- Frida Hoem
- Ji-Hwan Hwang
- Mutsumi Iizuka
- Yuji Kato
- Bridget Kenlee
- Suzanne O'Connell
- Victoria Peck
- Thomas Ronge
- Osamu Seki
- Shubham Tripathi
- Jonathan Warnock
説明
Supplementary tables for "New magnetostratigraphic insights from Iceberg Alley on the rhythms of Antarctic climate during the Plio-Pleistocene" Includes stratigraphic data for International Ocean Discovery Program (IODP) Expedition 382 Sites U1536 and U1537. Table Captions: Table S1. Splice table and additional appended cores for Site U1536 used in this study. Table S2. Splice table and additional appended cores for Site U1537 used in this study. Table S3. Correlation table for creation of correlated equivalent depth (ced) scale between Sites U1536 and U1537. Table S4. Uncertainty estimates for Site U1536 natural gamma radiation (NGR) correlation to Site U1537 on mcd depth scale using Undatable (Lougheed & Obrochta, 2019). Table S5. Site U1536 inclination, natural gamma radiation (NGR), gamma ray attenuation (GRA), and b* data used in this study. Table S6. Site U1537 inclination, natural gamma radiation (NGR), gamma ray attenuation (GRA), and b* data used in this study. Table S7. Meters below sea floor (mbsf) depths of magnetic reversals at Site U1536. Reversal ages are those used in this study’s age models (see Methods; Channell et al., 2016; Lisiecki & Raymo, 2005). Table S8. Meters composite depth (mcd) splice depths of magnetic reversals at Site U1536. Reversal ages are those used in this study’s age models (see Methods; Channell et al., 2016; Lisiecki & Raymo, 2005). Table S9. Meters below sea floor (mbsf) depths of magnetic reversals at Site U1537. Reversal ages are those used in this study’s age models (see Methods; Channell et al., 2016; Lisiecki & Raymo, 2005). Table S10. Meters composite depth (mcd) splice depths of magnetic reversals at Site U1537. Reversal ages are those used in this study’s age models (see Methods; Channell et al., 2016; Lisiecki & Raymo, 2005). Table S11. Magnetostratigraphic age model for Site U1536 generated with Undatable (Lougheed & Obrochta, 2019). Table S12. Magnetostratigraphic age model for Site U1537 generated with Undatable (Lougheed & Obrochta, 2019). Table S13. Dove Bain data stacks used in this study. Table S14. Stratigraphic summary of magnetic reversals discussed in this study. U1308 ages from Channell et al., 2016. In relation to benthic δ18O, warm intervals are intervals with more positive values. In relation to Dove Basin facies, warm intervals are intervals with high higher b*, lower NGR, and lower GRA.
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キーワード
- Expedition 382
- Iceberg Alley
- Paleomagnetism
- Age-Depth Model
- Pliocene
- Marine Sediments
- Gamma Ray Attenuation (GRA)
- Dove Basin
- Magnetic Reversal
- International Ocean Discovery Program (IODP)
- Scotia Sea
- JOIDES Resolution
- Pleistocene
- Splice
- b*
- Site U1536
- Site U1537
- Antarctica
- Inclination
- Natural Gamma Radiation (NGR)
- Marine Geology
- Ice Sheet
詳細情報 詳細情報について
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- CRID
- 1882835442928637568
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- 本文言語コード
- en
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- データソース種別
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- OpenAIRE