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首页> 外文期刊>The Journal of Chemical Physics >Dynamic mapping of conical intersection seams: A general method for incorporating the geometric phase in adiabatic dynamics in polyatomic systems
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Dynamic mapping of conical intersection seams: A general method for incorporating the geometric phase in adiabatic dynamics in polyatomic systems

机译:锥形交叉接缝的动态映射:一种在多原子系统中掺入绝热动力学中的几何相的一般方法

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The incorporation of the geometric phase in single-state adiabatic dynamics near a conical intersection (CI) seam has so far been restricted to molecular systems with high symmetry or simple model Hamiltonians. This is due to the fact that the ab initio determined derivative coupling (DC) in a multi-dimensional space is not curl-free, thus making its line integral path dependent. In a recent work [C. L. Malbon et al., J. Chem. Phys. 145, 234111 (2016)], we proposed a new and general approach based on an ab initio determined diabatic representation consisting of only two electronic states, in which the DC is completely removable, so that its line integral is path independent in the simply connected domains that exclude the CI seam. Then with the CIs included, the line integral of the single-valued DC can be used to construct the complex geometry-dependent phase needed to exactly eliminate the double-valued character of the real-valued adiabatic electronic wavefunction. This geometry-dependent phase gives rise to a vector potential which, when included in the adiabatic representation, rigorously accounts for the geometric phase in a system with an arbitrary locus of the CI seam and an arbitrary number of internal coordinates. In this work, we demonstrate this approach in a three-dimensional treatment of the tunneling facilitated dissociation of the S-1 state of phenol, which is affected by a C-s symmetry allowed but otherwise accidental seam of CI. Here, since the space is three-dimensional rather than two-dimensional, the seam is a curve rather than a point. The nodal structure of the ground state vibronic wavefunction is shown to map out the seam of CI. Published by AIP Publishing.
机译:到目前为止,在锥形交叉点(CI)接缝附近的单态绝热动力学中的几何相位尚未限于具有高对称性或简单模型Hamiltonians的分子系统。这是由于在多维空间中的AB初始衍生物耦合(DC)不卷曲,因此使其线路整体路径依赖于无卷曲。在最近的工作中[C. L. Malbon等,J.Chem。物理。 345,234111(2016)]我们提出了一种基于AB Initio确定的糖尿病代表的新的和一般方法,其中包括两个电子国家,其中DC完全可拆卸,使其线路积分是在简单连接的路径上独立的路径排除CI缝的域。然后,随着CIS所包括的,单值DC的线路整体可用于构造精确地消除实值绝热电子波技的双值特征所需的复杂几何相关阶段。该几何相关阶段产生了向矢量电位,当包括在绝热表示中时,该矢量电位严格地考虑具有CI接缝的任意基因座的系统中的几何相位和任意数量的内部坐标。在这项工作中,我们在三维处理中证明了这种方法的隧道促进的S-1苯酚的解离,其受C-S对称性的影响,但否则CI的意外缝。这里,由于空间是三维而不是二维,因此接缝是曲线而不是点。地图的振动波功能的节点结构显示为映射CI的接缝。通过AIP发布发布。

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