Teleseismic measurements of Upper Mantle Shear-Wave Anisotropy in Southern Mexico

IF 2.7 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Tectonophysics Pub Date : 2024-08-13 DOI:10.1016/j.tecto.2024.230465
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Abstract

The Mexican subduction system is an ideal region to study 3-D mantle deformation patterns in response to changes in slab geometry and the presence of tears. Shear-wave splitting measurements were made using SKS, SKKS, and PKS waves in southern Mexico, where the Cocos slab subducts beneath the North American and western Caribbean plates. For most of southern Mexico, the results are consistent with predominantly trench-normal fast polarization directions that can be interpreted as a consequence of sub-slab entrained flow and 2-D corner flow in the mantle wedge in the presence of A-type olivine fabric (or similar). This pattern of trench-perpendicular fast axes extends northward to the region southeast of the Trans-Mexican Volcanic Belt. Beneath its eastern end, fast axes rotate ∼20° clockwise and are likely controlled by the absolute motion of the North American plate. In southeastern Mexico, along the coast and above the mantle wedge tip, the fast axes are trench-normal and the delay times are the shortest. They were interpreted to result from a possibly serpentinized mantle wedge tip. In the same region above the mantle wedge core, the splitting parameters appear to result from different flow patterns in the mantle wedge and the sub-slab mantle.

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墨西哥南部上地幔剪切波各向异性的远震测量结果
墨西哥俯冲系统是研究三维地幔变形模式对板块几何形状变化和裂缝存在的响应的理想区域。在墨西哥南部使用 SKS、SKKS 和 PKS 波进行了剪切波分裂测量,这里是科科斯板块俯冲到北美板块和西加勒比板块之下的地方。对于墨西哥南部的大部分地区,测量结果与主要的海沟法向快速极化方向一致,可解释为在存在 A 型橄榄石结构(或类似结构)的地幔楔中的板下夹带流和二维角流的结果。这种沟槽垂直快轴模式向北延伸至跨墨西哥火山带东南部地区。在其东端下方,快轴顺时针旋转 20°,很可能受到北美板块绝对运动的控制。在墨西哥东南部,沿海岸线和地幔楔尖上方,快轴呈沟槽状,延迟时间最短。它们被解释为地幔楔尖可能蛇化的结果。在地幔楔核上方的同一区域,分裂参数似乎是由地幔楔和底层地幔的不同流动模式造成的。
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来源期刊
Tectonophysics
Tectonophysics 地学-地球化学与地球物理
CiteScore
4.90
自引率
6.90%
发文量
300
审稿时长
6 months
期刊介绍: The prime focus of Tectonophysics will be high-impact original research and reviews in the fields of kinematics, structure, composition, and dynamics of the solid arth at all scales. Tectonophysics particularly encourages submission of papers based on the integration of a multitude of geophysical, geological, geochemical, geodynamic, and geotectonic methods
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