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地球外核中的地震低速赤道环面:来自尾波相关波场的证据。

Seismic low-velocity equatorial torus in the Earth's outer core: Evidence from the late-coda correlation wavefield.

作者信息

Ma Xiaolong, Tkalčić Hrvoje

机构信息

Research School of Earth Sciences, The Australian National University, Canberra 2601, ACT, Australia.

Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou 511458, China.

出版信息

Sci Adv. 2024 Aug 30;10(35):eadn5562. doi: 10.1126/sciadv.adn5562.

Abstract

Thermochemical inhomogeneities in the Earth's outer core that enhance our understanding of the geodynamo have been elusive. Seismic constraints on such inhomogeneities would provide clues on the amount and distribution of light elements in the core apart from iron and nickel. Here, we present evidence for a low-velocity volume within the outer core via the global coda correlation wavefield. Several key correlogram features with a unique sensitivity to the liquid core show variations with wave paths remarkably slower in the equatorial than polar planes. We constrain a torus structure at low latitudes with ~2% lower velocity than the surrounding liquid outer core via waveform modeling. We propose a thermochemical origin for such a low-velocity torus, providing important constraints on the dynamical processes of the Earth's outer core.

摘要

地球外核中增强我们对地球发电机理解的热化学不均匀性一直难以捉摸。除铁和镍之外,对这种不均匀性的地震约束将为核心中轻元素的数量和分布提供线索。在这里,我们通过全球尾波相关波场展示了外核内存在低速体的证据。几个对液核具有独特敏感性的关键相关图特征显示,赤道平面上的波路径变化比极平面上的明显更慢。我们通过波形建模在低纬度地区约束了一个速度比周围液态外核低约2%的环面结构。我们提出这种低速环面具有热化学起源,这为地球外核的动力学过程提供了重要约束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fd5/11364092/6e83d420fcfd/sciadv.adn5562-f1.jpg

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