Trapping of noble gases in proton‐irradiated silicate smokes

R. Nichols, J. Nuth, C. Hohenberg, C. Olinger, M. Moore
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引用次数: 9

Abstract

— We have measured Ne, Ar, Kr and Xe in Si2O3 “smokes” that were condensed on Al substrates, vapor-deposited with various mixtures of CH4, NH3, H2O and noble gases at 10 K and subsequently irradiated with 1 MeV protons to simulate conditions during grain mantle formation in interstellar clouds. The noble gases were analyzed using conventional stepwise heating and static noble gas mass spectrometry. Neither Ne nor Ar is retained by the samples upon warming to room temperature, but Xe is very efficiently trapped and retained. Kr is somewhat less effectively retained, typically depleted by factors of about 10–20 relative to Xe. Isotopic fractionation favoring the heavy isotopes of Xe and Kr of about 5–10‰/amu is observed. Correlations between the specific chemistry of the vapor deposition and heavy noble gas retention are most likely the result of competition by the various species for irradiation-produced trapping sites. The concentration of Xe retained by some of these smokes exceeds that observed in phase Q of meteorites and, like phase Q, they do not seem to be carriers of the light noble gases. Such artificially prepared material may, therefore, offer clues concerning the incorporation of the heavy planetary noble gases in meteoritic material and the nature of phase Q.
质子辐照硅酸盐烟雾中惰性气体的捕获
我们在Si2O3“烟雾”中测量了Ne, Ar, Kr和Xe,这些烟雾被凝聚在Al衬底上,在10 K下用各种CH4, NH3, H2O和稀有气体的混合物气相沉积,随后用1 MeV的质子照射,以模拟星际云中颗粒地幔形成的条件。采用常规的逐步加热和静态惰性气体质谱法对惰性气体进行分析。在加热到室温时,样品既不保留Ne也不保留Ar,但Xe被非常有效地捕获和保留。Kr的保留效率较低,通常以相对于Xe的10-20倍耗尽。同位素分馏倾向于重同位素Xe和Kr,约为5 ~ 10‰/amu。气相沉积的特定化学性质与重惰性气体保留之间的相关性很可能是不同物种争夺辐射产生的捕获点的结果。其中一些烟雾所保留的Xe的浓度超过了在陨石的Q相中观察到的浓度,而且,像Q相一样,它们似乎不是轻惰性气体的载体。因此,这种人工制备的材料可能提供有关行星重惰性气体在陨石物质中的掺入和Q相性质的线索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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