GSTDTAP  > 气候变化
DOI10.1029/2021GL095032
Back-arc extension of the Central Bransfield Basin induced by ridge–trench collision: Implications from ambient noise tomography and stress field inversion
Wei Li; Xiaohui Yuan; Benjamin Heit; Mechita C. Schmidt-Aursch; Javier Almendros; Wolfram H. Geissler; Yun Chen
2021-10-16
发表期刊Geophysical Research Letters
出版年2021
英文摘要

The Bransfield Basin is a young (∼4 Ma) back-arc basin related to the remnant subduction of the Phoenix Plate that once existed along the entire Pacific margin of the Antarctic Peninsula. Based on a recently deployed amphibious seismic network, we use ambient noise tomography to obtain the S-wave velocity structure in the Central Bransfield Basin (CBB). Combining with the stress-field inverted from focal mechanisms, our images reveal that the CBB suffers a significant extension in the northwest-southeast direction. The extension is strongest in the northeastern CBB with associated mantle exhumation and weakens to the southwest with decoupled deformations between the upper crust and lithospheric mantle. Such an along-strike variation of extension can be explained by slab window formation and forearc rotation, which are associated with the Phoenix Plate detachment during the ridge–trench collisions at the southwest of the Hero Fracture Zone.

领域气候变化
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/340068
专题气候变化
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Wei Li,Xiaohui Yuan,Benjamin Heit,等. Back-arc extension of the Central Bransfield Basin induced by ridge–trench collision: Implications from ambient noise tomography and stress field inversion[J]. Geophysical Research Letters,2021.
APA Wei Li.,Xiaohui Yuan.,Benjamin Heit.,Mechita C. Schmidt-Aursch.,Javier Almendros.,...&Yun Chen.(2021).Back-arc extension of the Central Bransfield Basin induced by ridge–trench collision: Implications from ambient noise tomography and stress field inversion.Geophysical Research Letters.
MLA Wei Li,et al."Back-arc extension of the Central Bransfield Basin induced by ridge–trench collision: Implications from ambient noise tomography and stress field inversion".Geophysical Research Letters (2021).
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