English

Path Integral Molecular Dynamics for Exact Quantum Statistics of Multi-Electronic-State Systems

Chemical Physics 2017-11-22 v2 Statistical Mechanics Computational Physics Quantum Physics

Abstract

An exact approach to compute physical properties for general multi-electronic-state (MES) systems in thermal equilibrium is presented. The approach is extended from our recent progress on path integral molecular dynamics (PIMD) [J. Chem. Phys. 145, 024103 (2016); 147, 034109 (2017)] for quantum statistical mechanics when a single potential energy surface is involved. We first define an effective potential function that is numerically favorable for MES-PIMD, and then derive corresponding estimators in MES-PIMD for evaluating various physical properties. Its application to several representative one-dimensional and multi-dimensional models demonstrates that MES-PIMD in principle offers a practical tool in either of the diabatic and adiabatic representations for studying exact quantum statistics of complex/large MES systems when the Born-Oppenheimer approximation, Condon approximation, and harmonic bath approximation are broken.

Keywords

Cite

@article{arxiv.1710.04126,
  title  = {Path Integral Molecular Dynamics for Exact Quantum Statistics of Multi-Electronic-State Systems},
  author = {Xinzijian Liu and Jian Liu},
  journal= {arXiv preprint arXiv:1710.04126},
  year   = {2017}
}
R2 v1 2026-06-22T22:10:23.604Z