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Super- and sub-Lorentzian effects in the Ar-broadened line wings of HCl gas

机译:HCl气体的AR-扩大线翅膀中的超级和亚洛特氏效应

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Using previously recorded spectra of HCl diluted in Ar gas at room temperature for several pressure conditions, we show that the absorptions in between successive P and R transitions are significantly different from those predicted using purely Lorentzian line shapes. Direct theoretical predictions of the spectra are also made using requantized classical molecular dynamics simulations and an input HCl-Ar interaction potential. They provide the time evolution of the dipole auto-correlation function (DAF) whose Fourier-Laplace transform yields the absorption spectrum. These calculations very well reproduce the observed super-Lorentzian behavior in the troughs between the intense lines in the central part of the band and the tendency of absorption to become sub-Lorentzian in the band wings between high J lines. The analysis shows that the former behavior is essentially due to incomplete collisions which govern the DAF at very short times. In addition, the increasing influence of line-mixing when going away from the band center explains the tendency of absorption to become more and more sub-Lorentzian in the wings. Published by AIP Publishing.
机译:在室温下在室温下使用先前记录的HCl的HCl光谱进行若干压力条件,我们表明,连续P和R转变之间的吸收与使用纯粹的Lorentzian线形状预测的那些。光谱的直接理论预测也使用重量化的经典分子动力学模拟和输入HCL-AR相互作用电位进行。它们提供了傅立叶式自相关函数(DAF)的时间演变,其傅立叶拉普拉斯变换产生吸收光谱。这些计算非常良好地再现了在频带中央部分中的强烈线之间的槽中的观察到的超级洛伦兹行为以及吸收的趋势使得在高j线之间的带翼中成为亚洛的洛伦兹。分析表明,前者行为基本上是由于在短时间内控制DAF的不完整碰撞。此外,当远离频带中心时,线混合的影响越来越大地解释了吸收的趋势,以在翅膀中变得越来越多的亚洛特卓。通过AIP发布发布。

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