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Iron Isotopic Compositions of Troilite (FeS) Inclusions from Iron Meteorites

机译:铁陨石中三铁(FeS)夹杂物的铁同位素组成

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We report non-mass-dependent Fe isotopic data for troilite (FeS) inclusions from 10 iron meteorites, representing both non-magmatic (IAB) and magmatic groups (IIAB, IIIAB, IVA). No resolvable variations are present in the most neutron-rich isotope (58Fe), but small deficits (≈?0.1 ε) in 56Fe were observed in several inclusions. With the exception of several Ca–Al-rich inclusions in primitive meteorites, these are the first reported non-mass-dependent variations in Fe isotopes for material formed in the early solar system. Nucleosynthetic variations in Ni isotopes were previously reported in these same samples. The effects in Fe isotopes are not correlated with those in Ni, which suggests that the origins of the isotopic variations are decoupled from one another. The 56Fe deficits may represent incomplete mixing of the precursor dust in the protoplanetary disk. Alternatively, a parent body process (e.g., irradiation by galactic cosmic rays) may have modified the Fe isotopic compositions of some inclusions, which initially had homogeneous Fe isotopic compositions.
机译:我们报告了非质量依赖的Fe同位素数据,来自10个铁陨石中的三叶草(FeS)夹杂物,代表了非岩浆(IAB)和岩浆组(IIAB,IIIAB,IVA)。在最富中子的同位素(58Fe)中没有可分辨的变化,但是在几个夹杂物中观察到56Fe的小缺陷(≈?0.1ε)。除了原始陨石中的一些富含Ca-Al的夹杂物外,这是最早报道的早期太阳系中形成的材料的Fe同位素非质量依赖性变化。以前在这些相同的样品中报道了Ni同位素的核合成变化。 Fe同位素的影响与Ni的影响不相关,这表明同位素变异的起源是相互解耦的。 56Fe的不足可能表示原行星盘中前尘的混合不完全。备选地,母体过程(例如,通过银河宇宙射线的辐射)可能已经修饰了一些夹杂物的Fe同位素组成,其最初具有均质的Fe同位素组成。

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