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首页> 外文期刊>The Journal of Chemical Physics >Behavior of polarizable models in presence of strong electric fields.I.Origin of nonlinear effects in water point-charge systems
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Behavior of polarizable models in presence of strong electric fields.I.Origin of nonlinear effects in water point-charge systems

机译:极化模型在强电场作用下的行为I.水点电荷系统中非线性效应的起源

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In the current opinion,the inclusion of polarization response in classical computer simulations is considered as one of the most important and urgent improvements to be implemented in modern empirical potential models.In this work we focus on the capability of polarizable models,based on the pairwise Coulomb interactions,to model systems where strong electric fields enter into play.As shown by Masia,Probst,and Rey (MPR) [in J.Chem.Phys.121,7362 (2004)],when a molecule interacts with point charges,polarizable models show underpolarization with respect to ab initio methods.We prove that this underpolarization,clearly related to nonlinear polarization effects,cannot be simply ascribed to the lack of hyperpolarization in the polarizable models,as suggested by MPR.Analysis of the electron-density rearrangement induced on a water molecule by a point charge reveals a twofold level of polarization response.One level involves intramolecular charge transfer on the whole molecular volume,with the related polarization exhibiting a seemingly linear behavior with the external electric field.The other nonlinear polarization level occurs only at strong electric fields and is found to be strictly correlated to the quantum-mechanical nature of the water molecule.The latter type of polarization has a local character,being limited to the space region of the water lone pairs.
机译:目前,将极化响应包括在经典计算机模拟中被认为是现代经验势模型中最重要和最紧迫的改进之一。在这项工作中,我们着重研究基于两两的极化模型的能力。库仑相互作用,可以模拟强电场起作用的系统。如Masia,Probst和Rey(MPR)所著[J.Chem.Phys.121,7362(2004)]中所示,当分子与点电荷相互作用时,可极化模型相对于从头算方法显示出欠极化。我们证明了这种与非线性极化效应明显相关的欠极化,不能简单地归因于MPR提出的可极化模型中缺乏超极化。电子密度重排分析通过点电荷在水分子上感应产生的极化反应具有两个水平。一个水平涉及分子内电荷在整个分子体积上的转移,相关极化表现出与外部电场看似线性的行为,另一种非线性极化水平仅在强电场下发生,并且被发现与水分子的量子力学性质严格相关,后一种极化具有局部性格,仅限于水孤对的空间区域。

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