不同解释方法下的古强度结果分析——以格鲁吉亚小高加索地区Korkhi火山层序为例

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Elisa M. Sánchez-Moreno, Manuel Calvo-Rathert, Avto Goguitchaichvili, George T. Vashakidze, Lisa Tauxe, Pierre Camps, Juan Morales-Contreras, Vladimir A. Lebedev, Néstor Vegas, Nayeli Pérez-Rodriguez, Ketino Gabarashvili
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引用次数: 0

摘要

本研究重点研究了两个火山序列的绝对强度记录,旨在丰富全球近5 Ma的古强度数据库,该数据库目前表现出重要的分散性。本文介绍了从Korkhi (Djavakheti Highland, Georgia)(41°27′31″N, 43°27′55″E)的上新世-更新世火山序列中获得的新的绝对古强度。科尔基火山分为两个岩浆流序列,分别为3.11±0.20 Ma和1.85±0.08 Ma。先前发表的古地磁方向(Sánchez-Moreno et al., 2018, https://doi.org/10.1029/2017GC007358)显示下科尔基子序列为正极性,上科尔基子序列为反-中极性。通过两种不同的Thellier-Thellier和IZZI方法和修正的多标本法获得了新的古强度测定结果。我们采用了不同的选择标准和解释方法(TTB、CCRIT、BiCEP和multimethod),并对它们在复杂磁性行为(如火山岩中常见的磁性行为)中的应用进行了批判性评价。结果表明,上科尔赤地区古强度为70 μT,下科尔赤地区古强度为14 μT,变化范围在5.2 ~ 37.2 μT之间。这些结果与最近提出的最后~ 1.5 Ma的非地心轴向偶极子(GAD)假设一致(Cych et al., 2023, https://doi.org/10.1029/2023JB026492),并且在3-4 Ma的场强较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Analysis of Paleointensity Results Under Different Interpretation Approaches: A Case Study on the Korkhi Volcanic Sequence (Lesser Caucasus, Georgia)

Analysis of Paleointensity Results Under Different Interpretation Approaches: A Case Study on the Korkhi Volcanic Sequence (Lesser Caucasus, Georgia)

In this study we focus on the investigation of the absolute intensity records of two volcanic subsequences, aiming to enrich the global paleointensity database for the last 5 Ma, which currently shows important dispersion. We present new absolute paleointensities obtained from the Plio-Pleistocene volcanic sequence of Korkhi (Djavakheti Highland, Georgia) (41°27′31″N, 43°27′55″E). Korkhi is divided into two lava flow subsequences dated at 3.11 ± 0.20 Ma and 1.85 ± 0.08 Ma. Paleomagnetic directions previously published (Sánchez-Moreno et al., 2018, https://doi.org/10.1029/2017GC007358) show a normal polarity in the lower Korkhi subsequence and a reverse-to-intermediate polarity in the upper Korkhi subsequence. The new paleointensity determinations are obtained through two different Thellier-type protocols (Thellier-Thellier and IZZI) and the corrected multispecimen method. We utilize different selection criteria and interpretation approaches (TTB, CCRIT, BiCEP and multimethod), and we make a critical evaluation on their application on complex magnetic behaviors, such as often found in volcanic rocks. Finally, we obtained a paleointensity of 70 μT in upper Korkhi and 14 paleointensities in lower Korkhi that vary between 5.2 and 37.2 μT. These results agree with a recently proposed non-Geocentric Axial Dipole (GAD) hypothesis for the last ∼1.5 Ma (Cych et al., 2023, https://doi.org/10.1029/2023JB026492), and with low field strength for the 3–4 Ma.

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来源期刊
Geochemistry Geophysics Geosystems
Geochemistry Geophysics Geosystems 地学-地球化学与地球物理
CiteScore
5.90
自引率
11.40%
发文量
252
审稿时长
1 months
期刊介绍: Geochemistry, Geophysics, Geosystems (G3) publishes research papers on Earth and planetary processes with a focus on understanding the Earth as a system. Observational, experimental, and theoretical investigations of the solid Earth, hydrosphere, atmosphere, biosphere, and solar system at all spatial and temporal scales are welcome. Articles should be of broad interest, and interdisciplinary approaches are encouraged. Areas of interest for this peer-reviewed journal include, but are not limited to: The physics and chemistry of the Earth, including its structure, composition, physical properties, dynamics, and evolution Principles and applications of geochemical proxies to studies of Earth history The physical properties, composition, and temporal evolution of the Earth''s major reservoirs and the coupling between them The dynamics of geochemical and biogeochemical cycles at all spatial and temporal scales Physical and cosmochemical constraints on the composition, origin, and evolution of the Earth and other terrestrial planets The chemistry and physics of solar system materials that are relevant to the formation, evolution, and current state of the Earth and the planets Advances in modeling, observation, and experimentation that are of widespread interest in the geosciences.
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