零(语言学)
零点能量
米勒
动力学(音乐)
物理
统计物理学
点(几何)
经典力学
数学物理
数学
几何学
哲学
地质学
量子力学
语言学
古生物学
声学
作者
Xin He,Zhihao Gong,Baihua Wu,Jian Liu
标识
DOI:10.1021/acs.jpclett.1c00232
摘要
The celebrated Meyer-Miller mapping model has been a useful approach for generating practical trajectory-based nonadiabatic dynamics methods. It is generally assumed that the zero-point-energy (ZPE) parameter is positive. The constraint implied in the conventional Meyer-Miller mapping Hamiltonian for an F-electronic-state system actually requires that parameter \gamma is larger than -1/F for the ZPE parameter for each electronic degree of freedom. Both negative and positive values are possible for such a parameter. We first establish a rigorous formulation to construct exact mapping models in the Cartesian phase space when the constraint is applied. When nuclear dynamics is approximated by the linearized semiclassical initial value representation, a negative ZPE parameter could lead to reasonably good performance in describing dynamic behaviors in typical spin-boson models for condensed-phase two-state systems, even at challenging zero temperature.
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