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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Relaxation of rotational angular momentum of polar diatomic molecules in simple liquids
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Relaxation of rotational angular momentum of polar diatomic molecules in simple liquids

机译:极性双原子分子在简单液体中的旋转角动量的弛豫

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The relaxation processes of rotational angular momentum of polar diatomic molecules diluted in simple liquids are analyzed by applying a non-Markovian relaxation theory to the study of the binary time autocorrelation function of the angular momentum. This non-Markovian theory was previously applied to the study of the infrared and Raman spectroscopy, and also to the analysis of the rotational energy relaxation processes. We have obtained non-Markovian evolution equations for the two-time j-level angular momentum correlation components involved in the angular momentum correlation function. In these equations, the time-dependent angular momentum transfer rates and the pure orientational angular transfer rates are given in terms of the binary time autocorrelation function of the diatomic-solvent anisotropic interaction. The non-Markovian evolution equations converge to Markovian ones in the long time limit, reaching the angular momentum transfer rates in the usual time-independent form. Alternative time scales for the angular relaxation processes, relative to the individual rotational processes as well as to the global decay correlations, are introduced and analyzed. The theory is applied to the study of the angular momentum relaxation processes of HCl diluted in liquid SF6, a system for which rotational energy relaxation and infrared and Raman spectroscopy was previously analyzed in the scope of the same theory.
机译:通过应用非马尔可夫弛豫理论对角动量的二元时间自相关函数进行研究,分析了在简单液体中稀释的极性双原子分子旋转角动量的弛豫过程。这种非马尔可夫理论以前曾被用于红外和拉曼光谱的研究,还被用于旋转能弛豫过程的分析。我们已经获得了涉及角动量相关函数的两次j级角动量相关分量的非马尔可夫演化方程。在这些方程式中,根据双原子-溶剂各向异性相互作用的二元时间自相关函数,给出了随时间变化的角动量传递速率和纯取向角传递速率。非马尔可夫演化方程在很长的时间内收敛到马尔可夫方程,以通常的时间无关形式达到角动量传递速率。引入并分析了相对于单个旋转过程以及整体衰减相关性的角度弛豫过程的替代时标。该理论适用于研究在液体SF6中稀释的HCl的角动量弛豫过程,该系统先前已在同一理论范围内分析了旋转能弛豫,红外和拉曼光谱。

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