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彗星物质中的氦和氖丰度及组成。

Helium and neon abundances and compositions in cometary matter.

作者信息

Marty Bernard, Palma Russell L, Pepin Robert O, Zimmermann Laurent, Schlutter Dennis J, Burnard Peter G, Westphal Andrew J, Snead Christopher J, Bajt Sasa, Becker Richard H, Simones Jacob E

机构信息

Centre de Recherches Pétrographiques et Géochimiques, Nancy Université, BP 20, 54501 Vandoeuvre-lès-Nancy Cedex, France.

出版信息

Science. 2008 Jan 4;319(5859):75-8. doi: 10.1126/science.1148001.

Abstract

Materials trapped and preserved in comets date from the earliest history of the solar system. Particles captured by the Stardust spacecraft from comet 81P/Wild 2 are indisputable cometary matter available for laboratory study. Here we report measurements of noble gases in Stardust material. Neon isotope ratios are within the range observed in "phase Q," a ubiquitous, primitive organic carrier of noble gases in meteorites. Helium displays 3He/4He ratios twice those in phase Q and in Jupiter's atmosphere. Abundances per gram are surprisingly large, suggesting implantation by ion irradiation. The gases are probably carried in high-temperature igneous grains similar to particles found in other Stardust studies. Collectively, the evidence points to gas acquisition in a hot, high ion-flux nebular environment close to the young Sun.

摘要

被困在彗星中并得以保存的物质可追溯到太阳系的早期历史。星尘号航天器从81P/怀尔德2号彗星捕获的粒子是可用于实验室研究的无可争议的彗星物质。在此,我们报告了对星尘物质中惰性气体的测量结果。氖同位素比率在“Q相”观测到的范围内,“Q相”是陨石中普遍存在的、携带惰性气体的原始有机物质。氦的3He/4He比率是“Q相”和木星大气中的两倍。每克的丰度惊人地高,表明是通过离子辐照注入的。这些气体可能存在于高温火成岩颗粒中,类似于在星尘号其他研究中发现的颗粒。总体而言,证据表明气体是在靠近年轻太阳的高温、高离子通量的星云环境中获取的。

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