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首页> 外文期刊>Meteoritics & planetary science >Characterization of the 1.2 mu m M1 pyroxene band: Extracting cooling history from near-IR spectra of pyroxenes and pyroxene-dominated rocks
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Characterization of the 1.2 mu m M1 pyroxene band: Extracting cooling history from near-IR spectra of pyroxenes and pyroxene-dominated rocks

机译:1.2μm M1辉石带的特征:从辉石和以辉石为主的岩石的近红外光谱中提取冷却历史

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摘要

The 1.2 mu m band in near-Infrared spectra of pyroxenes results from Fe2+ in the M I crystallographic site. The distribution of Fe and Mg between the M1 and M2 sites is in part a function of the cooling rate and thermal history of a pyroxene. Combining near-infrared and Mossbauer spectra for a series of compositionally controlled synthetic Mg, Fe, Ca pyroxenes, we quantity the strength of the 1.2 mu m band as a function of Fe2+ in the M1 site. Near-infrared spectra are deconvolved into component absorptions that can be assigned to the M1 and M2 Sites using the modified Gaussian model. The relative strength of the 1.2 mu m band is shown to be directly related to the amount of Fe2+ in the M1 site measured by Mossbauer spectroscopy. The strength of the 1.2 pin band relative to the combined strengths of the 1.2 and 2 pm bands, or the M1 intensity ratio, is calculated for 51 howardite, eucrite, and diogenite (HED) meteorites. Diogenites and cumulate eucrites exhibit the lowest M1 intensity ratios, consistent with their formation as slowly cooled Cumulates. Basaltic eucrites exhibit a large range of M1 intensity ratios, all of which are consistently higher than the diogenites and cumulate eucrites. This example illustrates how the M1 intensity ratio can be a used as a tool for characterizing the cooling history of remotely detected pyroxene-dominated rocks.
机译:辉石的近红外光谱中有1.2μm的谱带是由M I晶体学部位的Fe2 +产生的。 Fe和Mg在M1和M2位置之间的分布部分取决于辉石的冷却速率和热历史。结合一系列组成受控的合成Mg,Fe,Ca辉石的近红外光谱和Mossbauer光谱,我们确定了M1站点中1.2μm谱带的强度与Fe2 +的关系。近红外光谱被分解为分量吸收,可以使用修改后的高斯模型将其分配给M1和M2站点。 1.2微米波段的相对强度显示出与通过Mossbauer光谱法测量的M1位置中的Fe2 +量直接相关。对于51块芒硝,真绿岩和重生物(HED)陨石,计算出1.2针扎带的强度相对于1.2和2 pm带的组合强度或M1强度比。地长岩和累积的欧氏体显示出最低的M1强度比,与缓慢冷却的累积物形成一致。玄武岩的镁橄榄石表现出大范围的M1强度比,所有这些都始终高于双辉石和累积的镁橄榄石。此示例说明了如何将M1强度比用作表征遥测的以辉石为主的岩石的冷却历史的工具。

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