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首页> 外文期刊>The Journal of Chemical Physics >Multidimensional reactive scattering with quantum trajectories: Dynamics with Morse vibrational modes
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Multidimensional reactive scattering with quantum trajectories: Dynamics with Morse vibrational modes

机译:具有量子轨迹的多维反应性散射:莫尔斯振动模态的动力学

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摘要

The reactive scattering of a wave packet is studied by the quantum trajectory method for a model system with up to 25 Morse vibrational modes. The equations of motion are formulated in curvilinear reaction path coordinates with the restriction to a planar reaction path. Spatial derivatives are evaluated by the least squares method using contracted basis sets. Dynamical results, including trajectory evolution and time-dependent reaction probabilities, are presented and analyzed. For the case of one Morse vibrational mode, the results are in good agreement with those derived through direct numerical integration of the time-dependent Schrodinger equation. (c) 2006 American Institute of Physics.
机译:通过量子轨迹方法研究了具有25个莫尔斯振动模态的模型系统的波包反应散射。在曲线反应路径坐标中以平面反应路径为约束来公式化运动方程。使用收缩基集通过最小二乘法评估空间导数。提出并分析了动力学结果,包括轨迹演变和与时间有关的反应概率。对于一种莫尔斯振动模式,其结果与通过对时间相关的薛定inger方程进行直接数值积分得到的结果吻合良好。 (c)2006年美国物理研究所。

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