地质学
高原(数学)
构造学
变形(气象学)
白垩纪
古生物学
大陆边缘
地震学
古地磁
构造盆地
边距(机器学习)
大陆碰撞
压缩(物理)
划线
海底管道
岩石圈
各向异性
欧亚板块
厚板
碰撞
地貌学
板块构造
碰撞带
大陆地壳
顺时针方向的
磁异常
领域(数学)
大陆架
应变分配
作者
Zhantao Feng,Niels Meijer,Weilin Zhang,Guillaume Dupont‐Nivet,Wanlong Xu,Tao Zhang,Jinbo Zan,Yibo Yang,Xiaomin Fang
摘要
Abstract Intracontinental deformation records how early Eocene India–Asia collisional stress propagated into continental interiors. How rapidly compression reached the far field, and whether coeval Paleo‐Pacific slab dynamics contributed, remain debated. The Longzhong Basin, ∼1,900 km north of the collisional zone, provides a key test. Yet its early tectonic regime is contested because direct strain records are scarce. Here, we applied anisotropy of magnetic susceptibility, corrected using vertical‐axis rotation, to Cretaceous–early Eocene strata of the Xining and Linxia sub‐basins. Cretaceous fabrics define broadly E–W K1 orientations with ambiguous kinematic significance, whereas early Eocene fabrics consistently record layer‐parallel shortening. This contrast indicates that collisional compression reached the northeastern Tibetan Plateau within a few million years of collision onset. By the early Eocene, India‐Asia convergence, rather than Paleo‐Pacific rollback, dominated deformation in the Longzhong region, implying efficient stress transfer through mechanically coupled Tibetan terranes.
科研通智能强力驱动
Strongly Powered by AbleSci AI