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萨摩亚火山活动的俯冲和地幔柱起源。

A subduction and mantle plume origin for Samoan volcanism.

作者信息

Strak Vincent, Schellart Wouter P

机构信息

School of Earth, Atmosphere and Environment, Monash University, Melbourne, VIC, 3800, Australia.

Department of Earth Sciences, Vrije Universiteit Amsterdam, Amsterdam, Netherlands.

出版信息

Sci Rep. 2018 Jul 11;8(1):10424. doi: 10.1038/s41598-018-28267-3.

DOI:10.1038/s41598-018-28267-3
PMID:29992964
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6041271/
Abstract

The origin of Samoan volcanism in the southwest Pacific remains enigmatic. Whether mantle melting is solely caused by a mantle plume is questionable because some volcanism, here referred to as non-hotspot volcanism, defies the plume model and its linear age-progression trend. Indeed, non-hotspot volcanism occurred as far as 740 km west of the predicted Samoan hotspot after 5 Ma. Here we use fully-dynamic laboratory subduction models and a tectonic reconstruction to show that the nearby Tonga-Kermadec-Hikurangi (TKH) subduction zone induces a broad mantle upwelling around the northern slab edge that coincides with the non-hotspot volcanic activity after 5 Ma. Using published potential mantle temperatures for the ambient mantle and Samoan mantle plume, we find that two geodynamic processes can explain mantle melting responsible for intraplate volcanism in the Samoan region. We propose that before 5 Ma, the volcanism is consistent with the plume model, whereas afterwards non-hotspot volcanism resulted from interaction between the Subduction-Induced Mantle Upwelling (SIMU) and Samoan mantle plume material that propagated west from the hotspot due to the toroidal component of slab rollback-induced mantle flow. In this geodynamic scenario, the SIMU drives decompression melting in the westward-swept plume material, thus producing the non-hotpot volcanism.

摘要

西南太平洋萨摩亚火山活动的起源仍然是个谜。地幔熔融是否仅由地幔柱引起是有疑问的,因为一些火山活动(这里称为非热点火山活动)不符合地幔柱模型及其线性年龄递进趋势。事实上,在500万年后,非热点火山活动发生在预测的萨摩亚热点以西740公里处。在这里,我们使用全动态实验室俯冲模型和构造重建来表明,附近的汤加-克马德克-希库朗伊(TKH)俯冲带在北部板块边缘周围引起了广泛的地幔上涌,这与500万年后的非热点火山活动相吻合。利用已发表的周围地幔和萨摩亚地幔柱的潜在地幔温度,我们发现两个地球动力学过程可以解释导致萨摩亚地区板内火山活动的地幔熔融。我们提出,在500万年前,火山活动与地幔柱模型一致,而在此之后,非热点火山活动是由俯冲诱导地幔上涌(SIMU)与由于板块回撤诱导地幔流的环形分量而从热点向西传播的萨摩亚地幔柱物质之间的相互作用导致的。在这种地球动力学情景中,SIMU驱动向西扫过的地幔柱物质发生减压熔融,从而产生非热点火山活动。

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本文引用的文献

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Nat Commun. 2016 Feb 29;7:10799. doi: 10.1038/ncomms10799.
2
The Gutenberg discontinuity: melt at the lithosphere-asthenosphere boundary.古登堡不连续面:在岩石圈-软流圈边界处熔融。
Science. 2012 Mar 23;335(6075):1480-3. doi: 10.1126/science.1215433.
3
Reconciling surface plate motions with rapid three-dimensional mantle flow around a slab edge.协调面板块运动与板缘周围快速的三维地幔流。
Nature. 2010 May 20;465(7296):338-41. doi: 10.1038/nature09053.
4
Finite-frequency tomography reveals a variety of plumes in the mantle.有限频率层析成像揭示了地幔中的各种地幔柱。
Science. 2004 Jan 16;303(5656):338-43. doi: 10.1126/science.1092485. Epub 2003 Dec 4.
5
Laboratory models of the thermal evolution of the mantle during rollback subduction.俯冲回撤过程中地幔热演化的实验室模型。
Nature. 2003 Sep 4;425(6953):58-62. doi: 10.1038/nature01923.
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A complex pattern of mantle flow in the Lau backarc.劳盆地弧后地幔流的复杂模式。
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