首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Phase transition processes of olivine in the shocked Martian meteorite Tissint: Clues to origin of ringwoodite-, bridgmanite- and magnesiowilstite-bearing assemblages
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Phase transition processes of olivine in the shocked Martian meteorite Tissint: Clues to origin of ringwoodite-, bridgmanite- and magnesiowilstite-bearing assemblages

机译:震惊的火星陨石Tissint中橄榄石的相变过程:线索到含菱铁矿,布里奇锰铁矿和菱镁矿辉石组合的起源

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摘要

Tissint is a heavily shocked olivine-phyric shergottite. We investigated and documented several phase transformations and dissociation phenomena of olivine adjacent to and in many shock-induced melt-pockets of Tissint. Olivine grains entrained in the melt-pockets dissociated to equigranular magnesiowilstite + bridgmanite (latter now vitrified). With approaching to the boundaries between the melt-pockets and host-rocks of Tissint, some olivine grains entrained in the melt-pockets are incompletely dissociated. Spherulitic magnesiowilstite + bridgmanite assemblages occur in the incompletely dissociated olivine. Several residual olivine domains are retained at the center of spherulitic texture. With further approaching to the boundaries between the melt-pockets and host-rocks, some olivine grains entrained in the melt-pockets are segmented with a cellular-like texture, presumably induced by defect arrangement. Many fine-grained magnesiowilstite occurs around the individual "cells" of the segmented olivine grains. Considering the temperature gradient in the melt-pockets and the arrangement of dissociation and segmentation textures, olivine dissociation reaction was presumably initiated by the segmentation of olivine, subsequently followed by magnesiowilstite crystallization around the individual "cells" of the segmented olivine, and, by bridgmanite formation. Subsequently, spherulitic magnesiowiistite + bridgmanite assemblages occur around residual olivine domain, and finally, olivine completely dissociates to equigranular magnesiowilstite + bridgmanite assemblage. Olivine grains adjacent to the melt-pockets transform to randomly oriented polycrystalline ringwoodite assemblages. In rare case, ahrensite occurs in the more iron-rich portions of the olivine grains. With increasing distance from the melt-pockets, sets of ringwoodite lamellae occur in increasing abundance into the interior of the olivine grains. The lamellae consist of almost crystallographically oriented polycrystalline ringwoodite assemblages. The phase transitions from olivine to ringwoodite were presumably promoted by interface-controlled incoherent mechanism. The ringwoodite would be metastable phase which formed in the stability field where olivine dissociates into magnesiowiistite + bridgmanite. (C) 2016 Elsevier B.V. All rights reserved.
机译:Tissint是一种震惊的橄榄石-天然斜方锰矿。我们调查并记录了与Tissint相邻且在许多激振诱发的熔融口袋中的橄榄石的几种相变和解离现象。夹带中夹杂的橄榄石颗粒解离成等粒的菱镁矿+桥锰石(后已玻璃化)。随着接近蒂森特(Tissint)熔体腔和母岩之间的边界,夹带在熔体腔中的一些橄榄石颗粒不完全解离。球形镁铝辉石+桥锰矿组合发生在不完全解离的橄榄石中。几个残留的橄榄石结构域保留在球状结构的中心。随着进一步接近熔体口袋和母岩之间的边界,熔体口袋中夹带的一些橄榄石颗粒被分割成具有蜂窝状纹理,这大概是由于缺陷排列引起的。在细分的橄榄石晶粒的各个“晶胞”周围会出现许多细晶的镁辉石。考虑到熔体袋中的温度梯度以及解离和分段纹理的排列,推测橄榄石的解离反应是由橄榄石的分段引发的,随后在分段的橄榄石的各个“单元”周围出现菱镁矿结晶,然后由桥锰矿编队。随后,在残余橄榄石区域周围出现球晶镁硅锰铁矿+桥锰矿组合,最后,橄榄石完全解离为等粒镁硅锰铁矿+桥锰铁矿组合。与熔体袋相邻的橄榄石晶粒转变为无规取向的多晶林伍德组合。在极少数情况下,ahrensite发生在橄榄石晶粒中铁含量更高的部分。随着与熔体袋距离的增加,成环的木质薄片层出现在橄榄石颗粒内部的丰度增加。薄片由几乎结晶取向的多晶林伍德组成。界面控制的非相干机制可能促进了从橄榄石到林木的相变。在稳定场中,橄榄石分解成镁硅锰铁矿+水辉石,形成了亚稳相。 (C)2016 Elsevier B.V.保留所有权利。

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