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使用热高斯近似的线性化半经典初值时间关联函数:在凝聚相系统中的应用

Linearized semiclassical initial value time correlation functions using the thermal Gaussian approximation: applications to condensed phase systems.

作者信息

Liu Jian, Miller William H

机构信息

Department of Chemistry and K. S. Pitzer Center for Theoretical Chemistry, University of California, Berkeley, California 94720-1460, USA.

出版信息

J Chem Phys. 2007 Sep 21;127(11):114506. doi: 10.1063/1.2774990.

Abstract

The linearized approximation to the semiclassical initial value representation (LSC-IVR) has been used together with the thermal Gaussian approximation (TGA) (TGA/LSC-IVR) [J. Liu and W. H. Miller, J. Chem. Phys. 125, 224104 (2006)] to simulate quantum dynamical effects in realistic models of two condensed phase systems. This represents the first study of dynamical properties of the Ne(13) Lennard-Jones cluster in its liquid-solid phase transition region (temperature from 4 to 14 K). Calculation of the force autocorrelation function shows considerable differences from that given by classical mechanics, namely that the cluster is much more mobile (liquidlike) than in the classical case. Liquid para-hydrogen at two thermodynamic state points (25 and 14 K under nearly zero external pressure) has also been studied. The momentum autocorrelation function obtained from the TGA/LSC-IVR approach shows very good agreement with recent accurate path integral Monte Carlo results at 25 K [A. Nakayama and N. Makri, J. Chem. Phys. 125, 024503 (2006)]. The self-diffusion constants calculated by the TGA/LSC-IVR are in reasonable agreement with those from experiment and from other theoretical calculations. These applications demonstrate the TGA/LSC-IVR to be a practical and versatile method for quantum dynamics simulations of condensed phase systems.

摘要

半经典初值表示的线性化近似(LSC-IVR)已与热高斯近似(TGA)(TGA/LSC-IVR)[J. 刘和W. H. 米勒,《化学物理杂志》125, 224104 (2006)] 一起用于模拟两个凝聚相系统实际模型中的量子动力学效应。这是对Ne(13) Lennard-Jones团簇在其液-固相变区域(温度从4到14 K)动力学性质的首次研究。力自相关函数的计算结果显示与经典力学给出的结果有显著差异,即团簇比经典情况更具流动性(类似液体)。还研究了处于两个热力学状态点(在几乎零外压下为25 K和14 K)的液态对氢。从TGA/LSC-IVR方法获得的动量自相关函数与近期在25 K时精确的路径积分蒙特卡罗结果 [A. 中山和N. 马克里,《化学物理杂志》125, 024503 (2006)] 显示出非常好的一致性。通过TGA/LSC-IVR计算的自扩散常数与实验值以及其他理论计算结果合理相符。这些应用表明TGA/LSC-IVR是一种用于凝聚相系统量子动力学模拟的实用且通用的方法。

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