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Herman-Wallis factor to improve thermometric accuracy of vibrational coherent anti-Stokes Raman spectra of H_2

机译:Herman-Wallis因子可提高H_2振动相干反斯托克斯拉曼光谱的测温精度

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The Herman-Wallis factor is a molecular parameter that measures the influence of centrifugal force on the intensity of spectral lines. Understandably, the effect is significant for very light molecules that necessarily have large couplings between vibrational and rotational degrees of freedom. Although known, the conceptual basis of the Herman-Wallis factor are nevertheless not clearly established in the literature. Over the years, different approaches have been proposed to explain the corrections to spectral line-strengths and, recently, an experimental study has demonstrated that Q-branch Raman transitions of H_2 are highly sensitive to the theoretical model employed to determine the Herman-Wallis factor. In this paper, this fact is used to analyze the consequences on thermometry based on coherent anti-Stokes Raman scattering (CARS) designed to probe H_2 molecules in combustion studies. It is found that the different Herman-Wallis factors lead to relative thermometric disagreements from several tens up to hundreds of degrees. This analysis could explain why H_2 CARS thermometry has been considered less reliable than thermometric predictions based on CARS of more common molecules such as N_2, O_2 and others. In particular, it is remarked that unreliable expressions of Herman-Wallis factors have been used so far to interpret Q-branch H_2 CARS experiments.
机译:Herman-Wallis因子是一个分子参数,用于测量离心力对光谱线强度的影响。可以理解,对于在振动和旋转自由度之间必定具有大耦合的非常轻的分子,这种影响是显着的。尽管是众所周知的,但文献中并没有清楚地确定Herman-Wallis因子的概念基础。多年来,已经提出了不同的方法来解释对谱线强度的校正,最近,一项实验研究表明,H_2的Q分支拉曼跃迁对确定Herman-Wallis因子所用的理论模型高度敏感。 。在本文中,此事实用于分析基于相干反斯托克斯拉曼散射(CARS)的测温结果,该相干反斯托克斯拉曼散射旨在研究燃烧研究中的H_2分子。发现不同的Herman-Wallis因子导致数十到数百度的相对温度差异。该分析可以解释为什么认为H_2 CARS测温方法的可靠性不如基于更常见分子(例如N_2,O_2等)的CARS的测温方法预测的可靠性。特别要指出的是,到目前为止,已经使用了不可靠的Herman-Wallis因子表达来解释Q分支H_2 CARS实验。

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