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Upper-mantle origin of the Yellowstone hotspot

机译:黄石热点的上地幔起源

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Fundamental features of the geology and tectonic setting of the northeast-propagating Yellowstone hotspot are not explained by a simple deep-mantle plume hypothesis and, within that framework, must be attributed to coincidence or be explained by auxiliary hypotheses. These features include the persistence of basaltic magmatism along the hotspot track, the origin of the hotspot during a regional middle Miocene tectonic reorganization, a similar and coeval zone of northwestward magmatic propagation, the occurrence of both zones of magmatic propagation along a first-order tectonic boundary, and control of the hotspot track by preexisting structures. Seismic imaging provides no evidence for, and several contraindications of, a vertically extensive plume-like structure beneath Yellowstone or a broad trailing plume head beneath the eastern Snake River Plain. The high helium isotope ratios observed at Yellowstone and other hotspots are commonly assumed to arise from the lower mantle, but upper-mantle processes can explain the observations. The available evidence thus renders an upper-mantle origin for the Yellowstone system the preferred model; there is no evidence that the system extends deeper than 200 km, and some evidence that it does not. A model whereby the Yellowstone system reflects feedback between upper-mantle convection and regional lithospheric tectonics is able to explain the observations better than a deep-mantle plume hypothesis.
机译:东北传播的黄石热点的地质和构造背景的基本特征没有通过简单的深幔柱假说解释,并且在该框架内, < / sup>必须归因于巧合,或由辅助 假设进行解释。这些特征包括沿热点轨迹的玄武质 的持久性,区域中新世构造重组期间热点 的起源,a 相似和西北向岩浆传播的时代区域, 沿一阶构造边界的两个岩浆传播区的发生,以及热点轨迹的控制 通过预先存在的结构。地震成像没有提供证据证明黄石下面的垂直扩展 气溶胶状结构或在其下方的宽尾随的 气溶胶头以及一些禁忌证。蛇河平原东部。通常假定黄石和其他热点的高氦 同位素比率 来自下地幔,但上地幔 过程可以解释观察。现有证据 从而为黄石系统首选模型提供了上地幔起源。没有证据表明该系统扩展了 超过200公里,还有一些证据表明没有。 模型,其中黄石系统反映了上地幔对流和区域岩石圈构造之间的反馈,能够比深地幔更好地解释观测结果羽状假设。

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  • 来源
    《GSA Bulletin》 |2002年第10期|1245-1256|共12页
  • 作者单位

    U.S. Geological Survey, 345 Middlefield Road, Menlo Park, California 94025, USA;

    Department of Geological Sciences, University of Durham, Durham DH1 3LE, UK;

    U.S. Geological Survey, 345 Middlefield Road, Menlo Park, California 94025, USA;

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