State Key Laboratory of Molecular Reaction Dynamics and Center for Theoretical and Computational Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, People's Republic of China.
J Chem Phys. 2010 Jan 21;132(3):034308. doi: 10.1063/1.3290946.
We describe a time-dependent wavepacket based method for the calculation of the state-to-state cross sections for the Cl+H(2) reaction including all couplings arising from the nonzero spin and electronic orbital angular momenta of the Cl atom. Reactant-product decoupling allows us to use a physically correct basis in both the reactant and the product arrangements. Our calculated results agree well with the experimental results of Yang and co-workers. We also describe a model with two coupled potential energy surfaces, which includes the spin-orbit coupling, which is responsible for the largest non-Born-Oppenheimer effects in the Cl+H(2) reaction but neglects the off-diagonal electronically diabatic coupling and all Coriolis couplings due to the electronic spin and orbital angular momenta. The comparison of the results of the full six-state and two-state models with an electronically adiabatic (one-state) description reveals that the latter describes well the reaction out of the ground spin-orbit state, while the two-state model, which is computationally much faster than the full six-state model, describes well the reaction from both the ground and excited spin-orbit states.
我们描述了一种基于含时波包的方法,用于计算 Cl+H(2)反应的态-态截面,其中包括 Cl 原子非零自旋和电子轨道角动量引起的所有耦合。反应物-产物解耦允许我们在反应物和产物排布中都使用物理上正确的基。我们的计算结果与 Yang 等人的实验结果吻合良好。我们还描述了一个具有两个耦合势能面的模型,其中包括自旋轨道耦合,它是 Cl+H(2)反应中最大的非 Born-Oppenheimer 效应的原因,但忽略了由于电子自旋和轨道角动量引起的非对角电子离域耦合和所有科里奥利耦合。全六态和两态模型与电子绝热(单态)描述的结果比较表明,后者很好地描述了基自旋轨道态之外的反应,而计算速度比全六态模型快得多的两态模型则很好地描述了来自基态和激发态自旋轨道态的反应。