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首页> 外文期刊>The Journal of Chemical Physics >The He-LiH potential energy surface revisited.II.Rovibrational energy transfer on a three-dimensional surface
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The He-LiH potential energy surface revisited.II.Rovibrational energy transfer on a three-dimensional surface

机译:再谈He-LiH势能面II。三维表面上的振动能量传递

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We use our rigid rotor He-LiH potential energy surface [B.K.Taylor and R.J.Hinde,J.Phys.Chem.111,973 (1999)] as a starting point to develop a three-dimensional potential surface that describes the interaction between He and a rotating and vibrating LiH molecule.We use a fully quantum treatment of the collision dynamics on the current potential surface to compute rovibrational state-to-state cross sections.We compute excitation and relaxation vibrational rate constants as a function of temperature by integrating these cross sections over a Maxwell-Boltzmann translational energy distribution and summing over Boltzmann-weighted initial rotational levels.The rate constants for vibrational excitatation of LiH are very small for temperatures below 300 K.Rate constants for vibrational relaxation of excited LiH molecules,however,are several orders of magnitude larger and show very little temperature dependence,suggesting that the collisions that result in vibrational relaxation are governed by long-range attractive interactions.
机译:我们以刚性转子He-LiH势能面[BKTaylor和RJHinde,J.Phys.Chem.111,973(1999)]为起点,来开发描述He与旋转中心之间相互作用的三维势能面。我们对当前势能表面上的碰撞动力学进行了完全量子处理,以计算出振动状态间的横截面,并通过将这些横截面积分计算出励磁和弛豫振动速率常数与温度的函数关系。在低于300 K的温度下,LiH的振动激发速率常数非常小,而激发的LiH分子的振动弛豫速率常数却是几个数量级。较大的振幅并且几乎没有温度依赖性,这表明导致振动松弛的碰撞受以下因素控制:远程吸引人的互动。

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