首页> 外文期刊>The Journal of Chemical Physics >MODE-SPECIFIC ENERGY ANALYSIS FOR ROTATING-VIBRATING TRIATOMIC MOLECULES IN CLASSICAL TRAJECTORY SIMULATION
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MODE-SPECIFIC ENERGY ANALYSIS FOR ROTATING-VIBRATING TRIATOMIC MOLECULES IN CLASSICAL TRAJECTORY SIMULATION

机译:经典弹道仿真中旋转振动三基团分子的模式比能量分析

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A method for the mode-specific energy analysis in a classical trajectory calculation is developed. The pure rotational energy is evaluated by invoking the Eckart condition. To evaluate the vibrational energy in each normal mode, the vibrational velocity is divided into two parts, the angular motion part and the angular motion free part, and the latter is analyzed with the Cartesian and internal coordinate systems, The potential energy of each normal mode is also evaluated in the two coordinate systems. A simple algorithm to include some anharmonicity correction is presented. Sample calculations with nonreacting triatomic molecules, H2O and HCN, show that the Internal coordinate system is more adequate than the Cartesian, especially for the Linear molecule HCN. An excellent result is obtained for the product (CHO+) of a reaction, suggesting that the present method is adequate for the mode-specific energy analysis of classical trajectory results. (C) 1997 American Institute of Physics. [References: 43]
机译:提出了一种用于经典轨迹计算中特定模式能量分析的方法。通过调用Eckart条件评估纯旋转能。为了评估每个法线模式下的振动能量,将振动速度分为两个部分,即角运动部分和角运动自由部分,并用笛卡尔坐标系和内部坐标系对其进行分析,每个法线模式的势能还可以在两个坐标系中进行评估。提出了一种包括一些非谐波校正的简单算法。使用非反应性三原子分子H2O和HCN进行的样本计算表明,内部坐标系比笛卡尔坐标系更合适,尤其是对于线性分子HCN。对于反应的产物(CHO +)获得了优异的结果,表明本方法足以用于经典轨迹结果的模式特定能量分析。 (C)1997美国物理研究所。 [参考:43]

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