Richings Gareth W, Worth Graham A
School of Chemistry, University of Birmingham , Edgbaston, Birmingham B15 2TT, U.K.
J Phys Chem A. 2015 Dec 17;119(50):12457-70. doi: 10.1021/acs.jpca.5b07921. Epub 2015 Oct 9.
A method for diabatising multiple electronic states on-the-fly within the direct dynamics variational multi-configuration Gaussian method for calculating quantum nuclear dynamics is presented. The method is based upon the propagation of the adiabatic-diabatic transformation matrix along the paths followed by the Gaussian basis functions that constitute the nuclear wave function, by use of a well-known differential equation relating the matrix and the nonadiabatic vector coupling terms between the electronic states. The implementation of the method is described, and test calculations are presented using the ground and first-excited states of the butatriene cation as an example, allowing comparison to the earlier regularisation diabatisation scheme as well as to full nuclear dynamics on a precomputed potential energy surface. The new scheme is termed propagation diabatisation.
提出了一种在直接动力学变分多组态高斯方法中实时对多个电子态进行 diabatic 化的方法,用于计算量子核动力学。该方法基于绝热 - diabatic 变换矩阵沿着构成核波函数的高斯基函数所遵循的路径进行传播,通过使用一个将矩阵与电子态之间的非绝热矢量耦合项相关联 的著名微分方程。描述了该方法的实现,并以丁三烯阳离子的基态和第一激发态为例进行了测试计算,以便与早期的正则化 diabatic 化方案以及在预先计算的势能面上的完整核动力学进行比较。新方案被称为传播 diabatic 化。