Mantle deformation in the highly oblique indo-burma subduction system inferred from shear wave splitting measurements

IF 4.8 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Earth and Planetary Science Letters Pub Date : 2024-07-24 DOI:10.1016/j.epsl.2024.118895
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Abstract

We utilized shear wave splitting analysis of teleseismic SKS, SKKS, and PKS phases to infer upper mantle deformational fabrics across a substantial area of Southeast Asia, where splitting measurements were previously limited. We used newly available permanent and temporary broadband seismic networks deployed across the Indo-Burma subduction zone and the eastern Indochina peninsula. The resulting 492 well-constrained splitting and 654 null measurements from 185 stations reveal clear large-scale patterns in the mantle deformational fabrics in response to the highly oblique active subduction and a large transform plate boundary. We identified two distinct domains of mantle deformation fabrics in the western Burma microplate and the eastern Indochina peninsula. In the former, trench parallel N-S fast polarization directions with an average lag time (δt) of 1.9 s are observed beneath the Indo-Burman Ranges. We suggest the observed splitting is partly due to anisotropy in the sub-slab region and relates to shear induced by the north moving Indian plate. The lithospheric fabric within the Indo-Burman Ranges and underlying subducting slab fabric contribute to produce the observed average δt of 1.9 s. The δt value decreases to an average of 1.0 s towards the back-arc until we reach the dextral Sagaing fault. In the second domain, starting approximately 100 km east of the Sagaing fault, we observe a consistent E-W fast direction with an average δt of 1.10 s in the eastern Shan-Thai and Indochina blocks. We interpret the E-W fabric as due to the deformation associated with the westward spreading of the Hainan mantle plume, possibly driven by overriding plate motion. Low velocities in the shallow mantle and late Cenozoic intraplate volcanism in this region support the plume-driven asthenospheric flow model in the Indochina peninsula. The sudden transition of the fast polarization direction from N-S to E-W along the eastern edge of the Burma microplate indicates the Sagaing fault acts as a mantle flow boundary between the subduction dominated trench parallel flow to the west and plume induced asthenospheric flow to the east. We also observed no net splitting beneath the Bengal basin which is most likely due to the presence of frozen vertical fabric resulting from the Kerguelen plume activity during Early Cretaceous.

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从剪切波分裂测量推断高度倾斜的印度-缅甸俯冲系统中的地幔变形
我们利用对远震 SKS、SKKS 和 PKS 相的剪切波分裂分析,推断了东南亚大部分地区的上地幔变形结构,而以前对这些地区的分裂测量是有限的。我们使用了新近部署在印度-缅甸俯冲带和印度支那半岛东部的永久和临时宽带地震网络。来自 185 个台站的 492 次约束良好的分裂和 654 次无效测量结果显示,地幔变形结构的大尺度模式与高度倾斜的活跃俯冲和大型转换板块边界密切相关。我们在缅甸微板块西部和印度支那半岛东部发现了两个不同的地幔变形结构区域。在前者,我们在印缅山脉下观测到了平均滞后时间(δt)为 1.9 秒的 N-S 平行沟槽快速极化方向。我们认为,观测到的劈裂部分是由于海底下区域的各向异性造成的,与印度板块北移引起的剪切有关。印缅山脉内的岩石圈结构和下伏板块结构共同产生了观测到的平均 1.9 秒的δt。在第二个域中,从实皆断块以东约 100 公里处开始,我们在掸泰和印度支那地块东部观察到一致的东西向快速方向,平均 t 值为 1.10 秒。我们将这种东西向构造解释为与海南地幔羽块向西扩张有关的变形,可能是由凌驾板块运动驱动的。该地区浅地幔的低速度和新生代晚期的板内火山活动支持印度支那半岛地幔驱动的星体层流动模型。缅甸微板块东部边缘的快速极化方向突然从N-S转向E-W,这表明实皆断层是西侧以俯冲为主的海沟平行流和东侧羽流驱动的星体流之间的地幔流边界。我们还观察到孟加拉盆地下方没有净分裂,这很可能是由于早白垩世期间凯尔盖朗羽流活动造成的冻结垂直结构的存在。
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来源期刊
Earth and Planetary Science Letters
Earth and Planetary Science Letters 地学-地球化学与地球物理
CiteScore
10.30
自引率
5.70%
发文量
475
审稿时长
2.8 months
期刊介绍: Earth and Planetary Science Letters (EPSL) is a leading journal for researchers across the entire Earth and planetary sciences community. It publishes concise, exciting, high-impact articles ("Letters") of broad interest. Its focus is on physical and chemical processes, the evolution and general properties of the Earth and planets - from their deep interiors to their atmospheres. EPSL also includes a Frontiers section, featuring invited high-profile synthesis articles by leading experts on timely topics to bring cutting-edge research to the wider community.
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