Ströker Philipp, Hellmann Robert, Meier Karsten
Institut für Thermodynamik, Helmut-Schmidt-Universität/Universität der Bundeswehr Hamburg, Holstenhofweg 85, 22043 Hamburg, Germany.
Phys Rev E. 2021 Feb;103(2-1):023305. doi: 10.1103/PhysRevE.103.023305.
Molecular expressions for thermodynamic properties and derivatives of the Gibbs energy up to third order in the isobaric-isothermal (NpT) ensemble are systematically derived using the methodology developed by Lustig for the microcanonical and canonical ensembles [J. Chem. Phys. 100, 3048 (1994)10.1063/1.466446; Mol. Phys. 110, 3041 (2012)10.1080/00268976.2012.695032]. They are expressed by phase-space functions, which represent derivatives of the Gibbs energy with respect to temperature and pressure. Additionally, expressions for the phase-space functions for temperature-dependent potentials are provided, which, for example, are required when quantum corrections, e.g., Feynman-Hibbs corrections, are applied in classical simulations. The derived expressions are validated by Monte Carlo simulations for the simple Lennard-Jones model fluid at three selected state points. A unique result is that the phase-space functions contain only ensemble averages of combinations of powers of enthalpy and volume. Thus, the calculation of thermodynamic properties in the NpT ensemble does not require volume derivatives of the potential energy. This is particularly advantageous in Monte Carlo simulations when the interactions between molecules are described by empirical force fields or very accurate ab initio pair and nonadditive three-body potentials.
利用卢斯蒂格为微正则系综和正则系综开发的方法[《化学物理杂志》100, 3048 (1994)10.1063/1.466446;《分子物理学》110, 3041 (2012)10.1080/00268976.2012.695032],系统地推导了等压 - 等温(NpT)系综中热力学性质以及吉布斯自由能直至三阶导数的分子表达式。它们由相空间函数表示,这些相空间函数代表吉布斯自由能关于温度和压力的导数。此外,还给出了温度相关势的相空间函数表达式,例如,在经典模拟中应用量子修正(如费曼 - 希布斯修正)时就需要这些表达式。通过对简单的 Lennard - Jones 模型流体在三个选定状态点进行蒙特卡罗模拟,验证了所推导的表达式。一个独特的结果是,相空间函数仅包含焓和体积幂次组合的系综平均值。因此,在 NpT 系综中计算热力学性质不需要势能的体积导数。当分子间相互作用由经验力场或非常精确的从头算对势和非加性三体势描述时,这在蒙特卡罗模拟中特别有利。