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Investigating the Shock Histories of Lunar Meteorites Miller Range 090034, 090070, and 090075 using Petrography, Geochemistry, and Micro-FTIR Spectroscopy.

机译:利用岩相学,地球化学和微观FTIR光谱学研究月球陨石米勒范围090034,090070和090075的冲击历史。

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摘要

Fourier transform infrared (FTIR) spectroscopy and cathodoluminescence (CL) imaging techniques, combined with electron microprobe analyses, have been used to determine the physical state of feldspathic phases that have been subject to varying levels of shock in the grouped lunar meteorites Miller Range 090034, 090070, and 090075. Six feldspathic phases have been identified based on spectral, textural, and chemical properties. A specific infrared wavelength band ratio (1064/932 cm−1 equivalent to 9.40/10.73 μm), chosen because it can distinguish between some of the feldspathic phases, can be used to estimate the pressure regimes experienced by these phases. In addition, FTIR spatial mapping capabilities allow for visual comparison of variably shocked phases within the samples. By comparing spectral and compositional data, the origin and shock history of this lunar meteorite group has been determined, with each of the shocked feldspathic phases being related to events in its geological evolution. As such, we highlight that FTIR spectroscopy can be easily employed to identify shocked feldspathic phases in lunar samples; estimate peak shock pressures; and when compared with chemical data, can be used to investigate their shock histories.
机译:傅里叶变换红外(FTIR)光谱和阴极发光(CL)成像技术与电子微探针分析相结合,已被用来确定长石相的物理状态,这些长石相在成组的月球陨石米勒范围090034中受到了不同程度的冲击, 090070和090075。根据光谱,质地和化学性质,已经确定了六个长石相。选择特定的红外波段比例(1064/932 cm-1相当于9.40 / 10.73μm)是因为它可以区分某些长石相,因此可以用来估计这些相所经历的压力状态。此外,FTIR空间映射功能可对样品中可变冲击相进行视觉比较。通过比较光谱和成分数据,已经确定了该月陨石群的起源和震荡历史,其中每个震惊的长石相都与其地质演化中的事件有关。因此,我们强调了FTIR光谱可以很容易地用于确定月球样品中的震惊长石相。估计峰值冲击压力;与化学数据比较时,可用于调查其冲击历史。

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