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Perspective: C-60(+) and laboratory spectroscopy related to diffuse interstellar bands

机译:透视:C-60(+)和与弥漫性星际乐队相关的实验室光谱

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In the last 30 years, our research has focused on laboratory measurements of the electronic spectra of organic radicals and ions. Many of the species investigated were selected based on their potential astrophysical relevance, particularly in connection with the identification of appealing candidate molecules for the diffuse interstellar absorptions. Notably, carbon chains and derivatives containing hydrogen and nitrogen atoms in their neutral and ionic forms were studied. These data could be obtained after developing appropriate techniques to record spectra at low temperatures relevant to the interstellar medium. The measurement of gas phase laboratory spectra has enabled direct comparisons with astronomical data to be made and though many species were found to have electronic transitions in the visible where the majority of diffuse bands are observed, none of the absorptions matched the prominent interstellar features. In 2015, however, the first carrier molecule was identified: C-60(+). This was achieved after the measurement of the electronic spectrum of C-60(+)-He at 6 in a radiofrequency ion trap. Published by AIP Publishing.
机译:在过去的30年中,我们的研究专注于有机基团和离子的电子光谱的实验室测量。根据其潜在的天体物理相关性选择了许多所研究的物种,特别是在鉴定弥漫性外形吸收的吸引人候选分子的鉴定。值得注意的是,研究了碳链和含有氢和氮原子的中性和离子形式的衍生物。可以在开发适当的技术以在与星际介质相关的低温下记录光谱之后获得这些数据。气相实验室光谱的测量能够实现与天文数据的直接比较,尽管发现许多物种在观察到大多数漫射带中的可见中具有电子转换,但没有一种吸收符合突出的星际特征。然而,2015年,鉴定了第一载体分子:C-60(+)。这是在射频离子阱中测量C-60(+) - HE的电子谱后实现的。通过AIP发布发布。

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