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CLASSICAL TRAJECTORY STUDY OF PRODUCT STATE VECTOR CORRELATIONS - A MODEL FOR THE PHOTODISSOCIATION OF CF3NO

机译:产品状态向量相关性的经典轨迹研究-CF3NO光解离模型

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The photodissociation dynamics of CF3NO are modeled by three-dimensional classical trajectory calculations on the S-0 and T-1 electronic potential surfaces that include all vibrational and rotational degrees of freedom. The intramolecular potential energy, surface for CF3NO was obtained by optimizing parameters in an analytical potential function to best fit spectroscopic data and the results of UMP2/6-31 + GX* level ab initio calculations. Initial parent molecule energy and angular momentum distributions are computed using a new method that simulates the conditions of molecular beam experiments. The calculations are directed at interpreting experimental measurements of correlated NO product state distributions in the photodissociation of the nitrosoalkanes. The results show that the v-j correlation of NO photofragment is primarily determined by the C-N-O bending force constant and exit channel barrier on the T-1 surface. (C) 1997 American Institute of Physics. [References: 47]
机译:CF3NO的光解离动力学是通过在包括所有振动和旋转自由度的S-0和T-1电子势能表面上进行三维经典轨迹计算来建模的。 CF3NO的分子内势能表面是通过优化分析势函数中的参数以最适合光谱数据和UMP2 / 6-31 + GX *级别从头算出的结果获得的。初始母体分子的能量和角动量分布是使用一种模拟分子束实验条件的新方法来计算的。该计算旨在解释在亚硝基链烷的光离解中相关的NO产物状态分布的实验测量结果。结果表明,NO碎片的v-j相关性主要取决于C-N-O弯曲力常数和T-1表面的出口通道壁垒。 (C)1997美国物理研究所。 [参考:47]

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