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Presolar Isotopic Signatures in Meteorites and Comets: New Insights from the Rosetta Mission to Comet 67P/Churyumov-Gerasimenko

机译:陨石和彗星寄生同位素签名:来自Rosetta Missing彗星的新见解67P / Churyumov-Gerasimenko

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摘要

Comets are considered the most primitive planetary bodies in our Solar System, i.e., they should have best preserved the solid components of the matter from which our Solar System formed. ESA's recent Rosetta mission to Jupiter family comet 67P/Churyumov-Gerasimenko (67P/CG) has provided a wealth of isotope data which expanded the existing data sets on isotopic compositions of comets considerably. In this paper we review our current knowledge on the isotopic compositions of H, C, N, O, Si, S, Ar, and Xe in primitive Solar System materials studied in terrestrial laboratories and how the Rosetta data acquired with the ROSINA (Rosetta Orbiter Sensor for Ion and Neutral Analysis) and COSIMA (COmetary Secondary Ion Mass Analyzer) mass spectrometer fit into this picture. The H, Si, S, and Xe isotope data of comet 67P/CG suggest that this comet might be particularly primitive and might have preserved large amounts of unprocessed presolar matter. We address the question whether the refractory Si component of 67P/CG contains a presolar isotopic fingerprint from a nearby Type II supernova (SN) and discuss to which extent C and O isotope anomalies originating from presolar grains should be observable in dust from 67P/CG. Finally, we explore whether the isotopic fingerprint of a potential late SN contribution to the formation site of 67P/CG in the solar nebula can be seen in the volatile component of 67P/CG.
机译:彗星被认为是我们太阳系中最原始的行星机构,即,它们应该最好保留我们太阳系所形成的问题的固体部件。 ESA最近的Jupiter Family Comet 67P / Churyumov-Gerasimenko(67P / CG)提供了丰富的同位素数据,该数据扩展了彗星同位素组合物上的现有数据集。在本文中,我们审查了关于在地面实验室中研究的原始太阳系材料的H,C,N,O,Si,S,AR和XE上的同位素组合物的知识以及如何用Rosina(Rosetta Orbiter用于离子和中性分析的传感器)和Cosima(Cometry二次离子质量分析仪)质谱仪配合到这张照片中。 COMET 67P / CG的H,SI,S和XE同位素数据表明,该彗星可能是特别原始的,并且可能已经保留了大量的未加工的寄生物质。我们解决了67p / cg的难治性Si组分含有来自附近II型超新年(Sn)的预原同位素指纹的问题,并讨论源自预寄生颗粒的C和O同位素异常,应在67p / cg的灰尘中可观察到灰尘。最后,我们探讨了在67p / cg的挥发性组分中可以看出到太阳星云中67p / cg的形成部位的潜在后期sn的同位素指纹。

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