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首页> 外文期刊>International Geology Review >Continuous Metamorphic Zircon Growth and Interpretation of U-Pb SHRIMP Dating: An Example from the Western Himalaya
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Continuous Metamorphic Zircon Growth and Interpretation of U-Pb SHRIMP Dating: An Example from the Western Himalaya

机译:连续变质锆石的生长和U-Pb SHRIMP约会的解释:喜马拉雅西部的一个例子

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摘要

Ultrahigh-pressure (UHP) rocks in the northwest Himalaya are some of the youngest on earth, and allow testing of critical questions of UHP metamorphism and exhumation and the India-Asia collision. The Tso Morari Complex (TMC) is a UHP subduction-zone complex in eastern Ladakh in the western Himalaya, south of the Indus-Yarlung suture zone. U-Pb SHRIMP dating of zircon shows the TMC has a Proterozoic protolith, preserves a Pan-African magmatic history, and shows continuous metamorphic zircon growth during the Early to Middle Eocene, hence constraining the timing of collision, subduction, and exhumation in the western Himalaya. Zircon dating indicates that UHP metamorphism occurred at 53.3 + - 0.7 Ma, followed by 8 m.y. of continual zircon crystallization to amphibolite-facies metamorphic conditions at 45.2 + - 0.7 Ma. Similar continuous zircon growth during UHP metamorphism and through early exhumation to amphibolite-facies conditions occurs in other UHP subduction complexes, including the Sulu terrane, where coesite-bearing inclusions within dated zircon prove conclusively that zircon dates record UHP metamorphism. U-Pb SHRIMP dating of zircon for both the TMC and the Sulu belt demonstrate that zircon continues to crystallize at temperatures 400 deg + - 50 deg C based on ~(40)Ar/~(39)Ar dating yielding the same ages.
机译:喜马拉雅山西北部的超高压(UHP)岩石是地球上最年轻的岩石,可用于测试UHP变质,掘尸和印度与亚洲碰撞的关键问题。 Tso Morari综合体(TMC)是印度河-雅隆缝合带以南喜马拉雅山东部拉达克的超高压俯冲带综合体。锆石的U-Pb SHRIMP测年表明TMC具有元古代的原生质体,保留了泛非岩浆史,并且在始新世中期至中新世期间显示出连续的变质锆石生长,从而限制了西部碰撞,俯冲和发掘的时间喜马拉雅山。锆石测年表明,UHP变质发生在53.3±0.7 Ma,其次是8m.y。锆石连续结晶对45.2±0.7Ma的闪石相变质条件的影响在UHP变质过程中以及通过早期发掘到闪石相的条件下,类似的连续锆石生长也发生在其他UHP俯冲复合体中,包括Sulu地层,在已定日期的锆石中含Coesite的包裹体最终证明了锆石日期记录了UHP变质。 TMC和苏鲁带的锆石的U-Pb SHRIMP测年表明,基于〜(40)Ar /〜(39)Ar测年,锆石在400℃+-50℃的温度下继续结晶。

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