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首页> 外文期刊>The Journal of Chemical Physics >Electronic polarization effects in the photodissociation of Cl _2
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Electronic polarization effects in the photodissociation of Cl _2

机译:Cl _2光解离中的电子极化效应

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摘要

Velocity mapped ion imaging and resonantly enhanced multiphoton ionization time-of-flight methods have been used to investigate the photodissociation dynamics of the diatomic molecule Cl _2 following excitation to the first UV absorption band. The experimental results presented here are compared with high level time dependent wavepacket calculations performed on a set of ab initio potential energy curves [D. B. Kokh, A. B. Alekseyev, and R. J. Buenker, J. Chem. Phys. 120, 11549 (2004)]. The theoretical calculations provide the first determination of all dynamical information regarding the dissociation of a system of this complexity, including angular momentum polarization. Both low rank K = 1, 2 and high rank K = 3 electronic polarization are predicted to be important for dissociation into both asymptotic product channels and, in general, good agreement is found between the recent theory and the measurements made here, which include the first experimental determination of high rank K = 3 orientation.
机译:速度映射离子成像和共振增强的多光子电离飞行时间方法已用于研究激发到第一个UV吸收带后双原子分子Cl _2的光解离动力学。将此处介绍的实验结果与在一组从头算势能曲线[D.]上执行的高水平时间相关波包计算进行了比较。 B.Kokh,A.B.Alekseyev和R.J.Buenker,J.Chem。物理120,11549(2004)]。理论计算为有关这种复杂系统解离的所有动力学信息(包括角动量极化)提供了第一确定条件。预测低阶K = 1、2和高阶K = 3电子极化对于解离到渐近乘积通道都很重要,并且通常,最近的理论与此处进行的测量之间发现有很好的一致性,其中包括首次实验确定高阶K = 3方向。

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