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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Iron and nickel isotope compositions of presolar silicon carbide grains from supernovae
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Iron and nickel isotope compositions of presolar silicon carbide grains from supernovae

机译:超新星的预原碳化硅谷物的铁和镍同位素组成

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摘要

We report the carbon, silicon, iron, and nickel isotope compositions of twenty-five presolar SiC grains of mostly supernova (SN) origin. The iron and nickel isotope compositions were measured with the new Chicago Instrument for Laser Ionization, CHILI, which allows the analysis of all iron and nickel isotopes without the isobaric interferences that plagued previous measurements with the NanoSIMS. Despite terrestrial iron and nickel contamination, significant isotopic anomalies in Fe-54/Fe-56, Fe-57/Fe-56, Ni-60/Ni-58, Ni-61/Ni-58, Ni-62/Ni-58, and Ni-64/Ni-58 were detected in nine SN grains (of type X). Combined multi-isotope data of three grains with the largest nickel isotope anomalies (100% or -100% in at least one isotope ratio, when expressed as deviation from the solar value) are compared with the predictions of two SN models, one with and one without hydrogen ingestion in the He shell prior to SN explosion. One grain's carbon-silicon-iron-nickel isotope composition is consistent with the prediction of the model without hydrogen ingestion, whereas the other two grains' isotope anomalies could not be reproduced using either SN models. The discrepancies between the measured isotope compositions and model predictions may indicate element fractionation in the SN ejecta prior to or during grain condensation, and reiterate the need for three-dimensional SN models. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们报告了二十五个寄生SiC晶粒的碳,硅,铁和镍同位素组合物,主要是超新星(Sn)起源。用新的芝加哥用于激光电离的芝加哥仪器,辣椒测量铁和镍同位素组合物,其允许分析所有铁和镍同位素,而不会对纳米染料困扰先前的测量的异源干扰。尽管陆地钢和镍污染,Fe-54 / Fe-56,Fe-57 / Fe-56,Ni-60 / Ni-58,Ni-61 / Ni-58,Ni-62 / Ni-58中显着的同位素异常。 ,并在九个Sn颗粒(X型)中检测到Ni-64 / Ni-58。将三种颗粒的组合多同位素数据具有最大的镍同位素异常(& 100%或至少一种同位素比,当表示为与太阳能值的偏差表示时)与两个SN模型的预测进行比较在Sn爆炸之前,一个没有氢气摄取的一个,一个没有氢气摄入。一粒谷物的碳 - 硅 - 铁 - 镍同位素组合物与没有氢摄入的模型的预测一致,而另外两个谷物同位素异常不能使用SN模型再现。测量同位素组合物和模型预测之间的差异可以指示在晶粒冷凝器之前或期间的Sn喷射器中的元素分馏,并重申需要三维Sn模型。 (c)2017 Elsevier Ltd.保留所有权利。

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