Bian Xuezhi, Subotnik Joseph E
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
J Chem Theory Comput. 2024 Aug 13;20(15):6442-6453. doi: 10.1021/acs.jctc.4c00225. Epub 2024 Jul 25.
We simulate semiclassically angular momentum transfer for a molecular system subject to a circularly polarized light (CPL) field either moving along a single Born-Oppenheimer (BO) surface or moving along multiple BO surfaces. Both sets of simulations are able to conserve the total angular momentum around the propagation direction of the CPL field, the former requiring a Berry force and the latter requiring a surface parametrized by both nuclear position and momentum (a so-called phase-space approach). Our results provide new insight into the nature of semiclassical nonadiabatic dynamics methods and further demonstrate the power of such methods to capture angular momentum transfer between different media, highlighting the need for accurate algorithms that conserve the total angular momentum.
我们对处于圆偏振光(CPL)场中的分子系统进行了半经典角动量转移模拟,该分子系统要么沿着单个玻恩 - 奥本海默(BO)表面运动,要么沿着多个BO表面运动。这两组模拟都能够守恒围绕CPL场传播方向的总角动量,前者需要一个贝里力,而后者需要一个由核位置和动量共同参数化的表面(一种所谓的相空间方法)。我们的结果为半经典非绝热动力学方法的本质提供了新的见解,并进一步证明了此类方法捕捉不同介质之间角动量转移的能力,突出了对守恒总角动量的精确算法的需求。