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LARGE ORGANICS IN SPACE: LABORATORY MEASUREMENTS OF GAS PHASE SPECTRA AND DIFFUSE INTERSTELLAR BANDS

机译:太空中的大型有机物:气相谱的实验室测量和弥漫性星际频段

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Our approach to the assignment of Polycyclic Aromatic Hydrocarbons (PAHs) cations as carriers of some of the Diffuse Interstellar Bands (DIIBs) includes two complementary studies : the recording of the electronic spectra of cold PAH cations in the gas phase, and a systematic search for possible correspondence in astronomical DIBs spectra. The PAH cation visible spectra were recorded via monitoring the fragmentation ratio of the PAH~+-argon van der Waals complex in a molecular beam as a function of the photon energy of a visible laser beam crossing the molecular beam. Two observation campaigns with the TBL were carried out and allowed us to search for correspondance between the bands observSd in the laboratory spectra and in astronomical spectra, thanks to specific observational protocole and data processing. Upper-limits of abundance were determined for five PAH cations. Interstellar absorption zones identified in our spectra are of variable width and some of them are very likely the result of a combination due to several species.
机译:我们将多环芳烃(PAHS)阳离子分配的方法作为一些弥漫性星际带(DIIB)的载体包括两个互补研究:在气相中记录冷PAH阳离子的电子光谱,以及系统搜索在天文学DIBS光谱中可能的对应关系。通过监测分子束中的PAH〜+ -ARGON范德瓦尔斯复合物的碎片比来记录PAH阳离子可见光谱,作为在分子束的可见激光束的光子能量的函数的函数中。与TBL两个观测活动进行了并让我们来搜索对应关系带之间在实验室光谱天文光谱observSd,由于特定的观测protocole和数据处理。五个PAH阳离子测定丰度的上限。在我们的光谱中鉴定的星际吸收区具有可变宽度,其中一些可能是由于几种物种组合的结果。

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