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精确因式分解冒险:非束缚态的有前景方法。

Exact Factorization Adventures: A Promising Approach for Non-Bound States.

机构信息

Department of Physics, Rutgers University, Newark, NJ 07102, USA.

Institut de Chimie Physique UMR8000, Université Paris-Saclay, CNRS, 91405 Orsay, France.

出版信息

Molecules. 2022 Jun 22;27(13):4002. doi: 10.3390/molecules27134002.

Abstract

Modeling the dynamics of non-bound states in molecules requires an accurate description of how electronic motion affects nuclear motion and vice-versa. The exact factorization (XF) approach offers a unique perspective, in that it provides potentials that act on the nuclear subsystem or electronic subsystem, which contain the effects of the coupling to the other subsystem in an exact way. We briefly review the various applications of the XF idea in different realms, and how features of these potentials aid in the interpretation of two different laser-driven dissociation mechanisms. We present a detailed study of the different ways the coupling terms in recently-developed XF-based mixed quantum-classical approximations are evaluated, where either truly coupled trajectories, or auxiliary trajectories that mimic the coupling are used, and discuss their effect in both a surface-hopping framework as well as the rigorously-derived coupled-trajectory mixed quantum-classical approach.

摘要

对非束缚态分子动力学的建模需要准确描述电子运动如何影响核运动,反之亦然。精确因子分解(XF)方法提供了一个独特的视角,因为它提供了作用于核子体系或电子子体系的势能,这些势能以精确的方式包含了与另一子体系耦合的效应。我们简要回顾了 XF 思想在不同领域的各种应用,以及这些势能的特征如何有助于解释两种不同的激光驱动离解机制。我们详细研究了最近基于 XF 的混合量子经典近似中耦合项的不同评估方法,其中使用了真正的耦合轨迹或模拟耦合的辅助轨迹,并讨论了它们在表面跳跃框架以及严格推导的耦合轨迹混合量子经典方法中的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c20/9267945/918fefa7fb3c/molecules-27-04002-g001.jpg

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