地质学
岩浆作用
镁铁质
岩石圈
深熔
俯冲
堤坝
软流圈
纤维接头
地球化学
底镀
玄武岩
波罗地
碰撞带
岩石学
构造学
地震学
部分熔融
奥陶纪
解剖
医学
作者
Lin Ma,Qiang Wang,Andrew C. Kerr,Zheng‐Xiang Li,Wei Dan,Ya‐Nan Yang,Jin-Sheng Zhou,Jun Wang,Cheng Li
出处
期刊:Geology
[Geological Society of America]
日期:2022-12-02
卷期号:51 (1): 96-100
被引量:6
摘要
Abstract Eocene mafic magmatism in the Himalaya provides a crucial window for probing the evolution of crustal anatexis processes within the lower plate in a collisional orogen. We report geochemical data from the earliest postcollision ocean-island basalt–like mafic dikes intruding the Tethyan Himalaya near the northern edge of the colliding Indian plate. These dikes occurred coeval, and spatially overlap, with Eocene granitoids in the cores of gneiss domes and were likely derived from interaction between melts from the lithosphere-asthenosphere boundary and the Indian continental lithosphere. We propose that these mafic magmas were emplaced along lithospheric fractures in response to lithospheric flexure during initial subduction of the Indian continent and that the underplating of such mafic magmas resulted in orogen-parallel crustal anatexis within the Indian continent. This mechanism can explain the formation of coeval magmatism and the geologic evolution of a collisional orogen on both sides of the suture zone.
科研通智能强力驱动
Strongly Powered by AbleSci AI