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介观尺度上探测冲击诱发球粒陨石形成的早期阶段。

Probing the early stages of shock-induced chondritic meteorite formation at the mesoscale.

机构信息

Institute of Shock Physics, Blackett Laboratory, Imperial College London, London SW7 2BW, UK.

Department of Earth Science and Engineering, Imperial College London, London SW7 2BP, UK.

出版信息

Sci Rep. 2017 May 30;7:45206. doi: 10.1038/srep45206.

Abstract

Chondritic meteorites are fragments of asteroids, the building blocks of planets, that retain a record of primordial processes. Important in their early evolution was impact-driven lithification, where a porous mixture of millimetre-scale chondrule inclusions and sub-micrometre dust was compacted into rock. In this Article, the shock compression of analogue precursor chondrite material was probed using state of the art dynamic X-ray radiography. Spatially-resolved shock and particle velocities, and shock front thicknesses were extracted directly from the radiographs, representing a greatly enhanced scope of data than could be measured in surface-based studies. A statistical interpretation of the measured velocities showed that mean values were in good agreement with those predicted using continuum-level modelling and mixture theory. However, the distribution and evolution of wave velocities and wavefront thicknesses were observed to be intimately linked to the mesoscopic structure of the sample. This Article provides the first detailed experimental insight into the distribution of extreme states within a shocked powder mixture, and represents the first mesoscopic validation of leading theories concerning the variation in extreme pressure-temperature states during the formation of primordial planetary bodies.

摘要

球粒陨石是小行星的碎片,是行星的组成部分,保留了原始过程的记录。在它们的早期演化中,撞击驱动的岩石化作用非常重要,其中毫米级大小的球粒包裹体和亚微米级尘埃的多孔混合物被压实成岩石。在本文中,使用最先进的动态 X 射线射线照相术探测了类似前体球粒陨石材料的冲击压缩。直接从射线照相术中提取了空间分辨的冲击和颗粒速度以及冲击前沿厚度,这代表了比基于表面的研究中可以测量的数据范围大大增强。对测量速度的统计解释表明,平均值与使用连续体水平建模和混合物理论预测的值吻合良好。然而,观察到波速和波前厚度的分布和演化与样品的介观结构密切相关。本文首次提供了有关冲击粉末混合物中极端状态分布的详细实验见解,并首次对有关原始行星体形成过程中极端压力-温度状态变化的主要理论进行了介观验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/954c/5448141/35ce7e8875f4/srep45206-f1.jpg

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