首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Back-transformation of high-pressure phases in a shock melt vein of an H-chondrite during atmospheric passage: Implications for the survival of high-pressure phases after decompression
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Back-transformation of high-pressure phases in a shock melt vein of an H-chondrite during atmospheric passage: Implications for the survival of high-pressure phases after decompression

机译:H球粒陨石冲击熔脉中高压相在大气通过过程中的逆相变:对减压后高压相存活的影响

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摘要

We investigated the H6-chondrite Yamato 75267, in which a fusion crust cuts a shock melt vein. The shock vein region, more than 280 μm from the fusion crust, contains high-pressure phases, such as ringwoodite, majorite-pyrope_(ss) garnet and NaAlSi_3O_8 hollandite. However, the shock vein close to the fusion crust entirely consists of the low-pressure polymorphs, olivine, low-Ca pyroxene and plagioclase glass. The boundary between low- and high-pressure phase regions is parallel to the fusion crust. During the atmospheric passage, the peripheral part of the chondrite was melted to form the fusion crust. Our microscopic, laser micro-Raman, electron microprobe investigations and calculations indicate an area up to 300 μm from the fusion crust experienced a temperature of 1400 ℃ after 3 s during the melting of the peripheral part. The high-pressure phases would, at this conditions, quickly transform back to their low-pressure polymorphs. The result obtained here indicates that post-shock temperatures in the interior part of the veins were much lower than 1400 ℃, thus leading to the survival of high-pressure phases in heavily shocked chondrites.
机译:我们研究了H6球粒陨石大和75267,其中融合壳切割了激熔脉。距熔融壳超过280μm的冲击脉区域包含高压相,如林木质,菱铁矿-石榴石和NaAlSi_3O_8堇青石。但是,靠近熔壳的冲击脉全部由低压多晶型物,橄榄石,低钙辉石和斜长石玻璃组成。低压相区域和高压相区域之间的边界平行于熔融壳。在大气通过的过程中,球粒陨石的周边部分融化,形成熔壳。我们的显微镜,激光显微拉曼光谱,电子显微探针的研究和计算表明,在熔化外围零件3秒钟后,距熔壳最大300μm的区域经历了1400℃的温度。在这种条件下,高压相将迅速转变回其低压多晶型物。此处获得的结果表明,震荡后的静脉内部温度远低于1400℃,从而导致了强烈冲击的球粒陨石中高压相的存活。

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