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APS -APS April Meeting 2017 - Event - Comparative study of carbonaceous meteoritic fragments by micro-Raman spectroscopy and SEM/EDS.

机译:APS -APS 2017年4月会议-活动-通过微拉曼光谱和SEM / EDS对碳质陨石碎片进行比较研究。

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摘要

Meteorites provide precious clues about the formation of planets in the solar system. In particular, carbonaceous chondritic meteorites, considered the most primitive surviving materials from the early Solar System, can contribute to understand how planetisimals (the precursors to planets, of 1-100~km in radius) formed from dust (micron-size grains). These relics are mainly composed of chondrules (micro/millimeter-sized inclusions) surrounded by a matrix of microparticles. Here we present a comparative study of the structure and composition of the chondrules and surrounding matrix of different carbonaceous chondritic meteorites using low- and high-resolution micro-Raman spectroscopy and SEM/EDS (Scanning Electron Microscopy/Energy Dispersive X-ray Spectroscopy). We examine how these properties vary in different regions of the chondrules and matrix, capturing details from micrometer to millimeter scales. We compare the structure and composition between different samples, looking for signatures of the physical processes that drove their formation.
机译:陨石提供了有关太阳系中行星形成的宝贵线索。特别是碳质球状陨石,被认为是早期太阳系中最原始的幸存物质,可以帮助理解尘埃(微米级颗粒)如何形成小行星(半径为1-100公里的行星的前体)。这些文物主要由软骨基质(微米/毫米大小的内含物)和微粒基质包围。在这里,我们使用低分辨率和高分辨率显微拉曼光谱和SEM / EDS(扫描电子显微镜/能量色散X射线光谱法),对不同碳质球状陨石的软骨和周围基质的结构和组成进行了比较研究。我们研究了这些特性在软骨和基质的不同区域中如何变化,捕获了从微米到毫米尺度的细节。我们比较了不同样品之间的结构和组成,以寻找推动其形成的物理过程的特征。

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