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Gradients of the polarization energy in the effective fragment potential method

机译:有效碎片电位法中极化能量的梯度

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The effective fragment potential (EFP) method is an ab initio based polarizable classical method in which the intermolecular interaction parameters are obtained from preparative ab initio calculations on isolated molecules.The polarization energy in the EFP method is modeled with asymmetric anisotropic dipole polarizability tensors located at the centroids of localized bond and lone pair orbitals of the molecules.Analytic expressions for the translational and rotational gradients (forces and torques) of the EFP polarization energy have been derived and implemented.Periodic boundary conditions (the minimum image convention) and switching functions have also been implemented for the polarization energy,as well as for other EFP interaction terms.With these improvements,molecular dynamics simulations can be performed with the EFP method for various chemical systems.
机译:有效片段电位(EFP)方法是一种基于从头算的可极化经典方法,其中通过对分离的分子进行从头算起的计算获得分子间相互作用参数.EFP方法中的极化能量是通过位于以下位置的非对称各向异性偶极子极化率张量建模推导并实现了EFP极化能量的平移和旋转梯度(力和转矩)的解析表达式,并具有周期边界条件(最小图像约定)和切换函数通过这些改进,可以使用EFP方法对各种化学系统进行分子动力学仿真。

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