物理
绝热过程
相空间
振动耦合
弹道
联轴节(管道)
领域(数学)
经典力学
表面跳跃
量子力学
量子
玻恩-奥本海默近似
动量(技术分析)
量子电动力学
激发态
数学
机械工程
工程类
分子
财务
经济
纯数学
作者
Baihua Wu,Xin He,Jian Liu
标识
DOI:10.1021/acs.jpclett.3c03385
摘要
Nonadiabatic transition dynamics lies at the core of many electron/hole transfer, photoactivated, and vacuum field-coupled processes. About a century after Ehrenfest proposed "Phasenraum" and the Ehrenfest theorem, we report a conceptually novel trajectory-based nonadiabatic dynamics approach, nonadiabatic field (NaF), based on a generalized exact coordinate-momentum phase space formulation of quantum mechanics. It does not employ the conventional Born-Oppenheimer or Ehrenfest trajectory in the nonadiabatic coupling region. Instead, in NaF the equations of motion of the independent trajectory involve a nonadiabatic nuclear force term in addition to an adiabatic nuclear force term of a single electronic state. A few benchmark tests for gas phase and condensed phase systems indicate that NaF offers a practical tool to capture the correct correlation of electronic and nuclear dynamics for processes where the states remain coupled all the time as well as for the asymptotic region where the coupling of electronic states vanishes.
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