Himalayan megathrust geometry and relation to topography revealed by the Gorkha earthquake

地质学 地震学 逆冲断层 大地基准 推力 地震间隙 断层(地质) 震级(天文学) 俯冲 地震震级 构造学 大地测量学 几何学 物理 缩放比例 热力学 数学 天文
作者
John R. Elliott,Romain Jolivet,Pablo J. González,Jean‐Philippe Avouac,James Hollingsworth,M. P. Searle,Victoria L. Stevens
出处
期刊:Nature Geoscience [Nature Portfolio]
卷期号:9 (2): 174-180 被引量:422
标识
DOI:10.1038/ngeo2623
摘要

The Himalayan mountain range has been the locus of some of the largest continental earthquakes, including the 2015 magnitude 7.8 Gorkha earthquake. Competing hypotheses suggest that Himalayan topography is sustained and plate convergence is accommodated either predominantly on the main plate boundary fault, or more broadly across multiple smaller thrust faults. Here we use geodetic measurements of surface displacement to show that the Gorkha earthquake ruptured the Main Himalayan Thrust fault. The earthquake generated about 1 m of uplift in the Kathmandu Basin, yet caused the high Himalaya farther north to subside by about 0.6 m. We use the geodetic data, combined with geologic, geomorphological and geophysical analyses, to constrain the geometry of the Main Himalayan Thrust in the Kathmandu area. Structural analyses together with interseismic and coseismic displacements are best explained by a steep, shallow thrust fault flattening at depth between 5 and 15 km and connecting to a mid-crustal, steeper thrust. We suggest that present-day convergence across the Himalaya is mostly accommodated by this fault—no significant motion on smaller thrust faults is required. Furthermore, given that the Gorkha earthquake caused the high Himalayan mountains to subside and that our fault geometry explains measured interseismic displacements, we propose that growth of Himalayan topography may largely occur during the ongoing post-seismic phase.
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