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Size scales over which ordinary chondrites and their parent asteroids are homogeneous in oxidation state and oxygen-isotopic composition

机译:普通球粒陨石及其母体小行星在氧化态和氧同位素组成上均一的尺寸尺度

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摘要

Literature data demonstrate that on a global, asteroid-wide scale (plausibly on the order of 100 km), ordinary chondrites (OC) have heterogeneous oxidation states and O-isotopic compositions (represented, respectively, by the mean olivine Fa and bulk Delta O-17 compositions of equilibrated samples). Samples analyzed here include: (a) two H5 chondrite Antarctic finds (ALHA79046 and TIL 82415) that have the same cosmic-ray exposure age (7.6 Ma) and were probably within similar to 1 km of each other when they were excavated from the H-chondrite parent body, (b) different individual stones from the Holbrook L/LL6 fall that were probably within similar to 1 m of each other when their parent meteoroid penetrated the Earth's atmosphere, and (c) drill cores from a large slab of the Estacado H6 find located within a few tens of centimeters of each other. Our results indicate that OC are heterogeneous in their bulk oxidation state and O-isotopic composition on 100-km-size scales, but homogeneous on meter-, decimeter- and centimeter-size scales. (On kilometer size scales, oxidation state is heterogeneous, but 0 isotopes appear to be homogeneous.) The asteroid-wide heterogeneity in oxidation state and O-isotopic composition was inherited from the solar nebula. The homogeneity on small size scales was probably caused in part by fluid-assisted metamorphism and mainly by impact-gardening processes (which are most effective at mixing target materials on scales of <= 1 m). (c) 2007 Elsevier Ltd. All rights reserved.
机译:文献数据表明,在全球范围内的小行星范围内(大概在100 km左右),普通球粒陨石(OC)具有不均匀的氧化态和O同位素组成(分别由橄榄石平均Fa和大体积Delta O表示-17平衡样品的组成)。此处分析的样本包括:(a)两个H5球粒陨石南极发现物(ALHA79046和TIL 82415),它们具有相同的宇宙射线暴露年龄(7.6 Ma),并且从H挖出时彼此之间可能相距约1 km球粒陨石的母体,(b)Holbrook L / LL6坠落的不同单个石头,当它们的母流星体穿透地球大气层时,彼此之间可能相距约1 m,并且(c)从一块大平板钻取岩心Estacado H6发现彼此之间的距离只有几十厘米。我们的结果表明,在100公里尺度上,OC在其本体氧化态和O同位素组成上是异质的,而在米,分米和厘米尺度上是均匀的。 (在千米尺度上,氧化态是异质的,但0个同位素似乎是均匀的。)整个小行星的氧化态和O同位素组成的异质性是从太阳星云继承而来的。小尺寸尺度上的均质性可能部分是由流体辅助变质作用引起的,并且主要是由冲击压实过程引起的(这对于在小于等于1 m的尺度上混合目标材料最有效)。 (c)2007 Elsevier Ltd.保留所有权利。

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