虚时间路径积分的广义四阶分解:谐振子的意义

IF 1.2 4区 化学 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL Chinese Journal of Chemical Physics Pub Date : 2022-06-01 DOI:10.1063/1674-0068/cjcp2205089
Cong Wang, Lihan Zhang, Jian Liu, J. Shao
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引用次数: 1

摘要

虚时间路径积分形式为模拟现实系统的热力学性质提供了强有力的数值工具。我们证明了二阶和四阶分解对于谐振子的配分函数具有显著的统一解析形式。这样我们就可以得到热力学性质的表达式和主要误差项。为了得到广义对称四阶分解格式中自由参数的合理最优值,我们消除了前导误差项,使谐波系统的热力学性质达到期望阶的精度。这样的策略导致有效的四阶分解,产生一般系统的三阶精确热力学性质。
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Generalized fourth-order decompositions of imaginary time path integral: Implications of the harmonic oscillator
The imaginary time path integral formalism offers a powerful numerical tool for simulating thermodynamic properties of realistic systems. We show that, when second-order and fourth-order decompositions are employed, they share a remarkable unified analytic form for the partition function of the harmonic oscillator. We are then able to obtain the expression of the thermodynamic property and the leading error terms as well. In order to obtain reasonably optimal values of the free parameters in the generalized symmetric fourth-order decomposition scheme, we eliminate the leading error terms to achieve the accuracy of desired order for the thermodynamic property of the harmonic system. Such a strategy leads to an efficient fourth-order decomposition that produces third-order accurate thermodynamic properties for general systems.
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来源期刊
Chinese Journal of Chemical Physics
Chinese Journal of Chemical Physics 物理-物理:原子、分子和化学物理
CiteScore
1.90
自引率
10.00%
发文量
2763
审稿时长
3 months
期刊介绍: Chinese Journal of Chemical Physics (CJCP) aims to bridge atomic and molecular level research in broad scope for disciplines in chemistry, physics, material science and life sciences, including the following: Theoretical Methods, Algorithms, Statistical and Quantum Chemistry Gas Phase Dynamics and Structure: Spectroscopy, Molecular Interactions, Scattering, Photochemistry Condensed Phase Dynamics, Structure, and Thermodynamics: Spectroscopy, Reactions, and Relaxation Processes Surfaces, Interfaces, Single Molecules, Materials and Nanosciences Polymers, Biopolymers, and Complex Systems Other related topics
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