Romero José, Limão-Vieira Paulo, Hermansson Kersti, Probst Michael
Institute of Ion Physics and Applied Physics, University of Innsbruck, Technikerstraße 25, Innsbruck 6020, Austria.
Atomic and Molecular Collisions Laboratory, CEFITEC, Department of Physics, Universidade NOVA de Lisboa, Caparica 2829-516, Portugal.
J Phys Chem A. 2024 Feb 15;128(6):1163-1172. doi: 10.1021/acs.jpca.3c06724. Epub 2024 Feb 6.
In high-energy molecular dynamics or Monte Carlo simulations, standard force fields optimized for simulations at ambient temperatures are inadequate. This is largely because their repulsive parts have been regarded as not very significant, even well below zero interaction energies. It is, therefore, not obvious which force fields to resort to for simulating hot gases or plasmas. A force field model that uses the electronic densities of noninteracting atoms or molecules within the pair approximation is introduced. We start by deriving a naïve model that neglects any exchange and correlation effects between the electronic clouds and then correct this model by adding a term calibrated from calculations using the CCSD(T)/cc-pVTZ level of theory. The resulting expression for this term can be regarded as a simple exchange-correlation function. We compare the results for the repulsive part of the potential energy hypersurfaces with the force fields commonly used on some dimers of small molecules.
在高能分子动力学或蒙特卡罗模拟中,为环境温度下的模拟优化的标准力场并不适用。这主要是因为它们的排斥部分被认为不是很重要,即使在远低于零相互作用能的情况下也是如此。因此,对于模拟热气体或等离子体,采用哪种力场并不明确。本文介绍了一种在对近似下使用非相互作用原子或分子电子密度的力场模型。我们首先推导一个忽略电子云之间任何交换和关联效应的简单模型,然后通过添加一个从使用CCSD(T)/cc-pVTZ理论水平的计算校准的项来修正这个模型。这个项的最终表达式可以被视为一个简单的交换关联函数。我们将势能超曲面排斥部分的结果与一些小分子二聚体常用的力场进行了比较。