Strong seismic anisotropy due to upwelling flow at the root of the Yellowstone mantle plume

Geology Pub Date : 2024-03-01 DOI:10.1130/g51919.1
Jonathan Wolf, Mingming Li, Anne A. Haws, Maureen D. Long
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Abstract

The Yellowstone region (western United States) is a commonly cited example of intraplate volcanism whose origin has been a topic of debate for several decades. Recent work has suggested that a deep mantle plume, rooted beneath southern California, is the source of Yellowstone volcanism. Seismic anisotropy, which typically results from deformation, can be used to identify and characterize mantle flow. Here, we show that the proposed plume root location at the base of the mantle is strongly seismically anisotropic. This finding is complemented by geodynamic modeling results showing upwelling flow and high strains in the lowermost mantle beneath the Yellowstone region. Our results support the idea that the Yellowstone volcanism is caused by a plume rooted in the deepest mantle beneath southern California, connecting dynamics in the deepest mantle with phenomena at Earth’s surface.
黄石地幔羽流根部的上涌流动导致强烈的地震各向异性
黄石地区(美国西部)是板块内火山活动的一个常见例子,几十年来,该地区的火山活动起源一直是一个争论不休的话题。最近的研究表明,扎根于加利福尼亚南部地下的深地幔羽流是黄石火山活动的源头。地震各向异性通常是形变的结果,可用于识别和描述地幔流。在这里,我们展示了所提出的位于地幔底部的羽根位置具有强烈的地震各向异性。地球动力学建模结果表明,黄石地区下方的最底层地幔中存在上涌流动和高应变,从而补充了这一发现。我们的研究结果支持这样一种观点,即黄石火山活动是由扎根于加利福尼亚州南部地幔最深处的一个羽流引起的,它将地幔最深处的动力学与地球表面的现象联系在一起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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