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Correlated crustal and mantle melting documents proto-Tibetan Plateau growth.


ABSTRACT: The mechanism that causes the rapid uplift and active magmatism of the Hoh-Xil Basin in the northern Tibetan Plateau and hence the outward growth of the proto-plateau is highly debated, more specifically, over the relationship between deep dynamics and surface uplift. Until recently the Hoh-Xil Basin remained uncovered by seismic networks due to inaccessibility. Here, based on linear seismic arrays across the Hoh-Xil Basin, we present a three-dimensional S-wave velocity (VS) model of the crust and uppermost mantle structure beneath the Tibetan Plateau from ambient noise tomography. This model exhibits a widespread partially molten crust in the northern Tibetan Plateau but only isolated pockets in the south manifested as low-VS anomalies in the middle crust. The spatial correlation of the widespread low-VS anomalies with strong uppermost mantle low-VS anomalies and young exposed magmatic rocks in the Hoh-Xil Basin suggests that the plateau grew through lithospheric mantle removal and its driven magmatism.

SUBMITTER: Li W 

PROVIDER: S-EPMC11376070 | biostudies-literature | 2024 Sep

REPOSITORIES: biostudies-literature

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Correlated crustal and mantle melting documents proto-Tibetan Plateau growth.

Li Wei W   He Rizheng R   Yuan Xiaohui X   Schneider Felix F   Tilmann Frederik F   Guo Zhen Z   Chen Yongshun John YJ  

National science review 20240726 9


The mechanism that causes the rapid uplift and active magmatism of the Hoh-Xil Basin in the northern Tibetan Plateau and hence the outward growth of the proto-plateau is highly debated, more specifically, over the relationship between deep dynamics and surface uplift. Until recently the Hoh-Xil Basin remained uncovered by seismic networks due to inaccessibility. Here, based on linear seismic arrays across the Hoh-Xil Basin, we present a three-dimensional S-wave velocity (V<sub>S</sub>) model of  ...[more]

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