Wallace Brett B, Reimers Jeffrey R
Photobioenergetics, Research School of Biological Sciences, Australian National University, Canberra ACT 2600, Australia.
J Chem Phys. 2004 Dec 22;121(24):12208-16. doi: 10.1063/1.1825999.
A new semiclassical initial value representation (SC-IVR) propagator and a SC-IVR propagator originally introduced by Kay [J. Chem. Phys. 100, 4432 (1994)], are investigated for use in the split-operator method for solving the time-dependent Schrodinger equation. It is shown that the SC-IVR propagators can be derived from a procedure involving modified Filinov filtering of the Van Vleck expression for the semiclassical propagator. The two SC-IVR propagators have been selected for investigation because they avoid the need to perform a coherent state basis set expansion that is necessary in other time-slicing propagation schemes. An efficient scheme for solving the propagators is introduced and can be considered to be a semiclassical form of the effective propagators of Makri [Chem. Phys. Lett. 159, 489 (1989)]. Results from applications to a one-dimensional, two-dimensional, and three-dimensional Hamiltonian for a double-well potential are presented.
研究了一种新的半经典初值表示(SC-IVR)传播子以及最初由凯[《化学物理杂志》100, 4432 (1994)]提出的一种SC-IVR传播子,以用于求解含时薛定谔方程的分裂算符方法。结果表明,SC-IVR传播子可从一个过程推导得出,该过程涉及对范弗莱克半经典传播子表达式进行修正的菲利诺夫滤波。选择这两种SC-IVR传播子进行研究是因为它们无需进行其他时间切片传播方案中必需的相干态基组展开。引入了一种求解传播子的有效方案,该方案可被视为马克里[《化学物理快报》159, 489 (1989)]有效传播子的半经典形式。给出了将其应用于双阱势的一维、二维和三维哈密顿量的结果。