Observations of Interstellar Carbon Compounds

E. Dartois
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引用次数: 1

Abstract

Infrared absorption and emission features observed spectroscopically in our Galaxy allow to probe the composition of solid dust grains, their evolution and thus follow the cycling of matter in the Galaxy. Many observables do reveal the presence of large amounts of carbonaceous particles in space, other than the PAH-like emission lines. The carbonaceous materials observed include amorphous carbons, diamondoids showing in emission for a few specific sources, and the recently detected fullerenes. An important hydrogenated amorphous carbon component (HAC or a-C:H), traced by the 2940 cm-1 structured absorption feature is observed against Galactic background sources. Since the discovery of this feature in the early eighties (Allen ), the observation of a-C:H has been extended to the mid-infrared by space observatories, giving insight into additional associated features. They are also observed in external galaxies, showing the ubiquitous nature of these components. We will focus on astronomical observations of organic matter other than PAHs, amorphous carbons and associated laboratory dust analogues relevant to astrophysical applications.
星际碳化合物的观测
红外吸收和发射特征,在我们的银河系光谱观察允许探测固体尘埃颗粒的组成,他们的演变,从而跟随物质在银河系的循环。除了类多环芳烃的发射线外,许多可观测到的东西确实揭示了太空中存在大量的碳质颗粒。观察到的碳质物质包括无定形碳,在一些特定来源的发射中显示的金刚石,以及最近检测到的富勒烯。一个重要的氢化无定形碳成分(HAC或a-C:H),由2940 cm-1结构吸收特征追踪到银河系背景源。自从80年代初发现这一特征以来(Allen),对a-C:H的观测已经被空间天文台扩展到中红外波段,从而深入了解了其他相关特征。它们也在外部星系中被观察到,显示出这些成分无处不在的性质。我们将重点关注与天体物理应用相关的多环芳烃、无定形碳和相关实验室尘埃类似物以外的有机物的天文观测。
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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