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Theoretical study of VRT energy transfer in Ne + I2(B) collisions using a spectroscopic interaction potential

机译:Ne + I2(B)碰撞中VRT能量转移的光谱相互作用势理论研究

摘要

A theoretical analysis of the Ne 4- I2(B) inelastic collision dynamics is performed as an example of reliable and detailed calculations of microscopic rate constants. Very good agreement with the available experimental data is achieved using an empirical interaction potential determined from spectroscopic and dynamical data for the Ne⋯I2(B) van der Waals complex. Classical, semiclassical and quantum methods for calculating state-resolved collision cross sections and rate constants are compared. The quasiclassical trajectory approach is found to be efficient and reliable, whereas special care in the approximate separation of quantum and classical degrees of freedom is necessary to implement correctly the semiclassical method. The theoretical results are used to check the validity of some scaling laws for vibrational-rotational energy transfer in atom-diatom collisions.
机译:Ne 4-I2(B)非弹性碰撞动力学的理论分析是作为可靠且详细计算微观速率常数的示例。使用由Ne⋯I2(B)van der Waals配合物的光谱和动力学数据确定的经验相互作用势,可以与可用的实验数据取得非常好的一致性。比较了用于计算状态分辨碰撞截面和速率常数的经典,半经典和量子方法。准经典轨迹方法被认为是有效和可靠的,而对量子和经典自由度的近似分离则需要特别注意,以正确实现半经典方法。理论结果被用于检验某些比例定律对于原子-硅藻碰撞中的振动-旋转能量传递的有效性。

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