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Extreme oxygen-isotope compositions in magnetite from unequilibrated ordinary chondrites

机译:非平衡普通球粒陨石中磁铁矿中的极端氧同位素组成

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Primitive meteorites (such as the unequilibrated ordinary chondrites) have undergone only minor thermal processing on their parent asteroids, and thus provide relatively unaltered isotopic records from the early Solar System. For terrestrial materials, oxygen isotope compositions form a linear array called the terrestrial fractionation line. In meteorites the oxygen isotopic composition commonly deviates from this line, the magnitude of the deviation being expressed by the quantity Δ~(17)O. Such deviations, which cannot be explained by mass-dependent fractionation processes, are probably caused by the mixing of two or more nebular components having different nucleosynthetic histories, for example, solids and gas. But no direct evidence for the oxygen isotopic composition of the latter (which is the dominant oxygen reservoir) has hitherto been available. Here we report in situ oxygen-isotope measurements of magnetite grains in unequilibrated ordinary chondrites. Magnetite (which formed by aqueous alteration of metal in the parent asteroid) may serve as a proxy for nebular H_2O. We measured a value of Δ~(17)O ≈ 5 per thousand, much higher than typical values of 0-2 per thousand in ordinary-chondrite silicate grains. Our results imply that a nebular component of high-Δ~(17)O H_2O was incorporated into the parent asteroid of the unequilibrated ordinary chondrites.
机译:原始陨石(例如未平衡的普通球粒陨石)仅对其母体小行星进行了很小的热处理,因此提供了来自早期太阳系的相对不变的同位素记录。对于陆地材料,氧同位素组成形成一个线性阵列,称为陆地分馏线。在陨石中,氧同位素组成通常偏离这条线,偏差的大小由数量Δ〜(17)O表示。这种偏差不能由质量相关的分馏过程解释,可能是由于两种或多种具有不同核合成历史的星云成分(例如固体和气体)混合引起的。但是迄今为止,尚无直接证据证明后者的氧同位素组成(后者是主要的氧气储库)。在这里,我们报告了未平衡普通球粒陨石中磁铁矿颗粒的原位氧同位素测量。磁铁矿(由母体小行星中的金属发生水相变化而形成)可以充当星状H_2O的替代物。我们测量的Δ〜(17)O≈每千分之5的值,远高于普通球粒状硅酸盐硅酸盐晶粒的典型值0-2每千分之二。我们的结果表明,高Δ〜(17)O H_2O的星云成分被掺入了未平衡普通球粒陨石的母体小行星中。

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