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首页> 外文期刊>The Astrophysical journal >LABORATORY OPTICAL SPECTROSCOPY OF THE THIOPHENOXY RADICAL AND ITS PROFILE SIMULATION AS A DIFFUSE INTERSTELLAR BAND BASED ON ROTATIONAL DISTRIBUTION BY RADIATION AND COLLISIONS
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LABORATORY OPTICAL SPECTROSCOPY OF THE THIOPHENOXY RADICAL AND ITS PROFILE SIMULATION AS A DIFFUSE INTERSTELLAR BAND BASED ON ROTATIONAL DISTRIBUTION BY RADIATION AND COLLISIONS

机译:基于辐射和碰撞的旋转分布的硫代氧自由基的实验室光学光谱及其轮廓模拟

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The gas-phase optical absorption spectrum of the thiophenoxy radical (C6H5S), a diffuse interstellar band (DIB) candidate molecule, was observed in the discharge of thiophenol using a cavity ringdown spectrometer. The ground-state rotational constants of the thiophenoxy radical were theoretically calculated, and the excited-state rotational constants were determined from the observed rotational profile. The rotational profile of a near prolate molecule having C 2v symmetry was simulated on the basis of a rotational distribution model by radiation and collisions. Although the simulated profile did not agree with the observed DIBs, the upper limit of the column density for the thiophenoxy radical in the diffuse clouds toward HD 204827 was evaluated to be 2 × 1013 cm–2. The profile simulation indicates that rotational distribution by radiation and collisions is important to reproduce a rotational profile for a DIB candidate and that the near prolate C 2v molecule is a possible candidate for DIB with a band width variation dependent on the line of sight.
机译:使用腔衰荡光谱仪观察到了硫代苯氧基自由基(C6H5S)的气相光吸收光谱,这是扩散的星际带(DIB)候选分子。理论上计算了噻吩氧基自由基的基态旋转常数,并由观察到的旋转曲线确定了激发态旋转常数。在辐射和碰撞的旋转分布模型的基础上,模拟了具有C 2v对称性的近似扁长形分子的旋转轮廓。尽管模拟的轮廓与观察到的DIB不符,但扩散云中朝向HD 204827的噻吩氧基基团的柱密度上限估计为2×1013 cm–2。轮廓模拟表明,通过辐射和碰撞产生的旋转分布对于复制DIB候选的旋转轮廓很重要,并且接近扁长的C 2v分子是DIB的候选候选,其带宽取决于视线。

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