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Magnetic parameters of surface soils and AB profile in NE Iran

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Figshare2025-02-08 更新2026-04-08 收录
下载链接:
https://figshare.com/articles/dataset/_b_Dominant_21-kyr_Cyclicity_in_Loess_Magnetic_Proxies_from_Western_Arid_Central_Asia_During_the_Early_Pleistocene_b_/27861213/4
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The Earth orbital precession cycle (~21-kyr) is expected to have a sustained impact on global climate; however, precession signals are absent from global benthic δ<sup>18</sup>O records—a discrepancy known as the “41-kyr problem”. Here, we present new evidence of dominant ~21-kyr precession cycles in terrestrial climate proxies from western arid Central Asia (ACA) during the Early Pleistocene (~2.24-2.0 Ma), demonstrating the significant influence of precession on mid-latitude Asian climate. We found that the ratio of anhysteretic remanent magnetization susceptibility (χ<sub>ARM</sub>) to low-frequency magnetic susceptibility (χ<sub>lf</sub>) in loess sediments is a robust proxy for paleoprecipitation. A well-dated, ~600 ka χ<sub>ARM</sub>/χ<sub>lf</sub> record from loess deposits in western ACA shows clear 21-kyr cycles between ~2.24 and 2.0 Ma, when the regional climate was relatively dry and the pedogenic intensity was weak. Our results elucidate the role of precession as a driver of terrestrial climate dynamics and they also address the origin of the “41-kyr problem” in Milankovitch theory.
提供机构:
Murodov, Davlatkhudzha; Wang, Qiang; Wang, Xin; Khormali, Farhad; Lei, Jiamei; Yang, Jiaxing; Tang, Yining; Tang, Xiangfeng; Wang, Mi
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2024-11-22
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