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国际空间站 EXPOSE-R2 任务中彗星有机尘埃类似物的光解作用。

Photolysis of Cometary Organic Dust Analogs on the EXPOSE-R2 Mission at the International Space Station.

机构信息

1INAF - Osservatorio Astrofisico di Catania, Catania, Italy.

2Centre National d'Etudes Spatiales (CNES), Centre Spatial de Toulouse, Toulouse, France.

出版信息

Astrobiology. 2019 Aug;19(8):1018-1036. doi: 10.1089/ast.2018.1853. Epub 2019 Jan 17.

Abstract

We describe the results obtained on a set of organic samples that have been part of the experiment "Photochemistry on the Space Station (PSS)" on the EXPOSE-R2 mission conducted on the EXPOSE-R facility situated outside the International Space Station (ISS). The organic samples were prepared in the Catania laboratory by 200 keV He irradiation of N:CH:CO icy mixtures deposited at 17 K, on vacuum UV (VUV) transparent MgF windows. This organic material contains different chemical groups, including triple CN bonds, that are thought to be of interest for astrobiology. It is widely accepted that materials similar to that produced in the laboratory by ion irradiation of frozen ices could be present in some astrophysical environments such as comets. Once expelled from comets, these materials are exposed to solar radiation during their interplanetary journey. In the young Solar System, some of these processed materials could have reached early Earth and contributed to its chemical and prebiotic evolution. The samples were exposed for 16 months to the unshielded solar UV photons. It was found that, if an interplanetary dust particle (IDP) containing organic material (50% vol) is large enough (>20-30 μm), relevant chemical groups, such as those containing the CN triple bond, can survive for many years (>10 years) in the interplanetary medium.

摘要

我们描述了在一组有机样本上获得的结果,这些样本是在国际空间站 (ISS) 外部的 EXPOSE-R 设施上进行的“空间站上的光化学 (PSS)”实验的一部分。这些有机样本是在卡塔尼亚实验室通过在 17 K 下沉积的 N:CH:CO 冰混合物用 200 keV He 辐照制备的,在真空紫外 (VUV) 透明 MgF 窗口上。这种有机材料包含不同的化学基团,包括三重 CN 键,这被认为对天体生物学有意义。人们普遍认为,类似于通过冷冻冰的离子辐照在实验室中产生的材料可能存在于一些天体物理环境中,如彗星。这些材料一旦从彗星中喷出,就会在它们的行星际旅程中暴露在太阳辐射下。在年轻的太阳系中,其中一些经过处理的材料可能已经到达早期地球,并为其化学和前生物进化做出了贡献。这些样本在未屏蔽的太阳紫外光子下暴露了 16 个月。结果发现,如果一个含有有机物质的星际尘埃颗粒 (IDP)(50%体积)足够大 (>20-30 μm),那么包含 CN 三重键等相关化学基团的物质可以在星际介质中存活多年 (>10 年)。

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