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首页> 外文期刊>The Journal of Chemical Physics >Intramolecular vibrational energy redistribution in the highly excited fluoroform molecule:A quantum mechanical study using the multiconfiguration time-dependent Hartree algorithm
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Intramolecular vibrational energy redistribution in the highly excited fluoroform molecule:A quantum mechanical study using the multiconfiguration time-dependent Hartree algorithm

机译:高度激发的氟仿分子中的分子内振动能重新分布:使用多配置时变Hartree算法的量子力学研究

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The present paper is devoted to a detailed study of the intramolecular vibrational energy redistribution in fluoroform initiated by a local mode excitation of the CH stretch[nv_CH(n=1,...,4)].All nine internal degrees of freedom are explicitly taken into account and the full quantum mechanical simulation is performed by means of the multiconfiguration time-dependent Hartree algorithm.The existence of different time scales considerably complicates the dynamics.The mode-to-mode energy transfer is analyzed by calculating the evolution of the partial energies of all vibrational modes.This study emphasizes the crucial role played by the two-dimensional FCH bending modes which act as an energy reservoir.The fast energy flow into these bending modes significantly hinders an energy flow from the CH chromophore.Finally,our results are compared with those obtained previously with the wave operator sorting algorithm approach.
机译:本文致力于通过CH拉伸[nv_CH(n = 1,...,4)]的局部模式激发引发的氟仿中分子内振动能的重新分布[9]。考虑到这一点,并通过多配置时变Hartree算法进行了全量子力学模拟,不同时标的存在极大地使动力学复杂化。通过计算部分演化来分析模式间的能量转移这项研究强调了二维FCH弯曲模式作为能量储存库所起的关键作用。快速进入这些弯曲模式的能量显着阻碍了CH发色团的能量流动。最后,我们的结果与先前通过波动算子排序算法方法获得的结果进行比较。

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