首页> 外文期刊>The Journal of Chemical Physics >Relaxation of the CH stretch in liquid CHBr3: Solvent effects and decay rates using classical nonequilibrium simulations
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Relaxation of the CH stretch in liquid CHBr3: Solvent effects and decay rates using classical nonequilibrium simulations

机译:CHBr在液态CHBr3中的舒张弛豫:溶剂效应和衰减速率,使用经典的非平衡模拟

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This article addresses two questions regarding the decay of the CH stretch in liquid CHBr3. The first is whether the initial steps of the relaxation primarily involve energy redistribution within the excited molecule alone. Gas phase quantum mechanical and classical calculations are performed to examine the role of the solvent in this process. At the fundamental excitation level, it is found that CH stretch decay is, in fact, strongly solvent driven. The second question is on the applicability of a fully classical approach to the calculation of CH stretch condensed phase decay rates. To this end, nonequilibrium molecular dynamics simulations are performed. The results are compared with quantum mechanical rates computed previously. The two methods are found to be in fair agreement with each other. However, care must be exercised in the interpretation of the classical results. (c) 2006 American Institute of Physics.
机译:本文讨论了有关液态CHBr3中CH拉伸衰减的两个问题。首先是弛豫的初始步骤是否主要涉及仅在受激分子内进行能量重新分布。进行气相量子力学和经典计算以检查溶剂在此过程中的作用。在基本激发水平上,发现CH拉伸衰减实际上是由溶剂强烈驱动的。第二个问题是采用完全经典的方法来计算CH拉伸凝聚相衰减率的适用性。为此,进行了非平衡分子动力学模拟。将结果与先前计算的量子力学速率进行比较。发现这两种方法彼此公平一致。但是,在解释经典结果时必须格外小心。 (c)2006年美国物理研究所。

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