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Geodynamic processes of the southeastern Neo-Tethys Ocean and the formation mechanism of the curved subduction system in Southeast Asia 被引量:3
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作者 Weiwei DING Rixiang ZHU +5 位作者 Bo WAN Liang ZHAO Xiongwei NIU Pan ZHAO Baolu SUN Yanghui ZHAO 《Science China Earth Sciences》 SCIE EI CAS CSCD 2023年第4期703-717,共15页
Southeast Asia is located at the intersection of the Tethys and Pacific domains. The superimposed effects of the two tectonic domains have resulted in complicated deep structure, surface magma responses, and dynamic p... Southeast Asia is located at the intersection of the Tethys and Pacific domains. The superimposed effects of the two tectonic domains have resulted in complicated deep structure, surface magma responses, and dynamic processes of Southeast Asia. Based on the latest long-term passive seismic experiment and numerical modeling, this study reconstructs the dynamic processes of the closure of the Neo-Tethys Ocean and the formation of the curved subduction system in Southeast Asia since the Late Mesozoic. P-wave velocity structure shows a remnant of the Neo-Tethys subducted slab in the lower mantle beneath Southeast Asia at a depth of approximately 1500 km. On the Java-East Timor subduction zone, the remnant slab is coupled with the Indo-Australian subducting slab in the upper mantle with the same direction, while on the Sumatra subduction zone, the remnant slab is decoupled from the Indo-Australian subducting slab in different directions. The formation of the curved subduction system in Southeast Asia is resulted from the northward subdcutions of previous Neo-Tethys and current IndoAustralian Plate, and the westward subduction of the Pacific Plate since Mesozoic. The former is characterized by continuous subduction and subsequent continental block collision, forming the current continental lithosphere in Southeast Asia and the curve-shaped Sumatra-Java subduction zone;the latter is characterized by subduction retreat and back-arc spreading, forming the eastern Philippine subduction zone and a series of marginal sea basins. Since the Early Cretaceous, the opening of the North Australian Sea resulted in stagnation of the Australian Block in the high latitude area of the southern hemisphere for a long time.The North Australian Sea was dominated by out-dipping double subduction from 45 Ma, which resulted in rapid northward drifting of the Australian Block and final collision with the Sundaland. 展开更多
关键词 Southeastern neo-tethys ocean Curved subduction system in Southeast Asia North Australian Sea Deep structure Numerical modeling
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Subduction age of Neo-Tethys oceanic crust in southwest Yunnan, China: Laser micro-area ^(40)Ar-^(39)Ar dating 被引量:2
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作者 ZHOIMG Dalai, Jl Jianqing and HU ShilingInstitute of Geology, Chinese Academy of Sciences , Beijing 100029, China 《Chinese Science Bulletin》 SCIE EI CAS 1999年第23期2196-2199,共4页
The basic granulite, which is considered to be the MORB based on geochemistry and isotopic characteristics[1], has been discovered recently as the enclaves in the Yingjiang island-arc magmatic suite on the border of B... The basic granulite, which is considered to be the MORB based on geochemistry and isotopic characteristics[1], has been discovered recently as the enclaves in the Yingjiang island-arc magmatic suite on the border of Burma and west Yunnan, east of Myitkyina suture in the eastern Burma. The laser micro-area 40Ar-39Ar technique is used to date the age of garnet 展开更多
关键词 LASER micro-area 40Ar-39Ar DATING granulite facies metamorphic oceanic crust relict neo-tethys subduction age.
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