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印度与亚洲大陆碰撞的时间。

The timing of continental collision between India and Asia.

作者信息

Zheng Yongfei, Wu Fuyuan

机构信息

Key Laboratory of Crust-Mantle Materials and Environments, Chinese Academy of Sciences, School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China.

State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China.

出版信息

Sci Bull (Beijing). 2018 Dec 30;63(24):1649-1654. doi: 10.1016/j.scib.2018.11.022. Epub 2018 Dec 1.

Abstract

The timing of continental collision between India and Asia has been controversial for a long time because of the difficulty in screening isotopic ages for different types of tectonothermal event along the convergent continental boundary. After distinguishing the collisional orogeny from the precollisional accretionary orogeny and the postcollisional rifting orogeny, an age range of 55 ± 10 Ma is obtained to mark the collisional orogeny in the Early Cenozoic rather than throughout the Cenozoic. This age range provides the resolution to the timing of tectonic reactivation not only for reworking of the marginal arc systems in the Early Cenozoic but also for overprinting of granulite facies metamorphism on eclogites in the Late Cenozoic. In particular, superimposition of the rifting orogeny on both accretionary and collisional orogens in the Late Cenozoic is the key to the reactivation of both Gangdese and Himalayan orogens for contemporaneous metamorphism and magmatism at high thermal gradients. Therefore, rise of the plateau may be caused by underplating of the asthenospheric mantle for rifting orogeny in the composite Himalayan-Tibetan orogens after foundering of their roots in the Late Cenozoic.

摘要

由于难以筛选出沿汇聚大陆边界不同类型构造热事件的同位素年龄,印度与亚洲大陆碰撞的时间长期以来一直存在争议。在区分了碰撞造山作用与碰撞前增生造山作用以及碰撞后裂谷造山作用之后,得出一个55±10 Ma的年龄范围,以标志早新生代而非整个新生代的碰撞造山作用。这个年龄范围不仅为早新生代边缘弧系的改造提供了构造再活化时间的分辨率,也为晚新生代榴辉岩上麻粒岩相变质作用的叠加提供了分辨率。特别是,晚新生代裂谷造山作用叠加在增生造山作用和碰撞造山作用之上,是冈底斯和喜马拉雅造山带在高热梯度下同时发生变质作用和岩浆作用而再活化的关键。因此,在晚新生代根带沉陷之后,喜马拉雅 - 西藏复合造山带裂谷造山作用的软流圈地幔底侵作用可能导致了高原的隆升。

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