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Deciphering High-Pressure metamorphism in collisional context using microprobe-mapping methods : application to the Stak eclogitic massif (NW Himalaya)

机译:使用微探针映射方法在碰撞环境中破译高压变质作用:在Stak斜长断块(喜马拉雅山)中的应用

摘要

The Stak massif, northern Pakistan, is a newly recognized occurrence of eclogite formed by the subduction of the northern margin of the Indian continent in the northwest Himalaya. Although this unit was extensively retrogressed during the Himalayan collision, records of the high-pressure (HP) event as well as a continuous pressure-temperature (P-T) path were assessed from a single thin section using a new multiequilibrium method. This method uses microprobe X-ray compositional maps of garnet and omphacitic pyroxene followed by calculations of ∼200,000 P-T estimates using appropriate thermobarometers. The Stak eclogite underwent prograde metamorphism, increasing from 650 °C and 2.4 GPa to the peak conditions of 750 °C and 2.5 GPa, then retrogressed to 700–650 °C and 1.6–0.9 GPa under amphibolite-facies conditions. The estimated peak metamorphic conditions and P-T path are similar to those of the Kaghan and Tso Morari high- to ultrahigh-pressure (HP-UHP) massifs. We propose that these three massifs define a large HP to UHP province in the northwest Himalaya, comparable to the Dabie-Sulu province in China and the Western Gneiss Region in Norway.
机译:巴基斯坦北部的斯塔克地块是新发现的榴辉岩,它是由印度大陆北缘在喜马拉雅山西北部俯冲而形成的。尽管此单元在喜马拉雅山碰撞期间大幅度倒退,但使用新的多平衡方法从单个薄层评估了高压(HP)事件以及连续压力-温度(P-T)路径的记录。该方法使用石榴石和全相辉石的微探针X射线成分图,然后使用适当的热压计计算约200,000 P-T估计值。 Stak榴辉岩经历了渐进变质作用,从闪石相条件从650°C和2.4 GPa升高到750°C和2.5 GPa的峰值条件,然后回落到700–650°C和1.6–0.9 GPa。估计的峰值变质条件和P-T路径与Kaghan和Tso Morari高压到超高压(HP-UHP)地块的相似。我们建议,这三个地块将喜马拉雅西北部的UHP省定义为一个较大的HP,与中国的Dabie-Sulu省和挪威的Western Gneiss地区相当。

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