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The multiscale coarse-graining method. IX. A general method for construction of three body coarse-grained force fields

机译:多尺度粗粒度方法。九。三体粗粒力场的一般构造方法

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The multiscale coarse-graining (MS-CG) method is a method for constructing a coarse-grained (CG) model of a system using data obtained from molecular dynamics simulations of the corresponding atomically detailed model. The formal statistical mechanical derivation of the method shows that the potential energy function extracted from an MS-CG calculation is a variational approximation for the true potential of mean force of the CG sites, one that becomes exact in the limit that a complete basis set is used in the variational calculation if enough data are obtained from the atomistic simulations. Most applications of the MS-CG method have employed a representation for the nonbonded part of the CG potential that is a sum of all possible pair interactions. This approach, despite being quite successful for some CG models, is inadequate for some others. Here we propose a systematic method for including three body terms as well as two body terms in the nonbonded part of the CG potential energy. The current method is more general than a previous version presented in a recent paper of this series [L. Larini, L. Lu, and G. A. Voth, J. Chem. Phys. 132, 164107 (2010)]10.1063/1.3394863, in the sense that it does not make any restrictive choices for the functional form of the three body potential. We use hierarchical multiresolution functions that are similar to wavelets to develop very flexible basis function expansions with both two and three body basis functions. The variational problem is solved by a numerical technique that is capable of automatically selecting an appropriate subset of basis functions from a large initial set. We apply the method to two very different coarse-grained models: a solvent free model of a two component solution made of identical Lennard-Jones particles and a one site model of SPC/E water where a site is placed at the center of mass of each water molecule. These calculations show that the inclusion of three body terms in the nonbonded CG potential can lead to significant improvement in the accuracy of CG potentials and hence of CG simulations.
机译:多尺度粗粒度(MS-CG)方法是一种使用从相应原子详细模型的分子动力学模拟获得的数据构造系统的粗粒度(CG)模型的方法。该方法的形式化统计机械推导表明,从MS-CG计算中提取的势能函数是CG位置平均力的真实势的变分近似,在一个完整的基础集被限制的范围内,它变得精确。如果从原子模拟中获得了足够的数据,则用于变分计算。 MS-CG方法的大多数应用都采用了CG电位的非键合部分的表示形式,该表示形式是所有可能的配对相互作用的总和。这种方法尽管在某些CG模型上非常成功,但对于其他一些模型却是不够的。在这里,我们提出了一种系统方法,用于在CG势能的非键合部分包含三个体项以及两个体项。当前的方法比本系列最新论文中介绍的先前版本更具通用性。 Larini,L.Lu和G.A.Voth,J.Chem。物理132,164107(2010)] 10.1063 / 1.3394863,从某种意义上说,它对这三种身体潜能的功能形式没有做出任何限制性选择。我们使用类似于小波的分层多分辨率函数来开发具有两个和三个身体基函数的非常灵活的基函数扩展。变分问题通过一种数值技术得以解决,该数值技术能够从较大的初始集中自动选择基本函数的适当子集。我们将该方法应用于两个非常不同的粗粒度模型:由相同的Lennard-Jones颗粒制成的两组分溶液的无溶剂模型和SPC / E水的单点模型,其中一个点位于质量中心每个水分子。这些计算表明,在未键合的CG电位中包含三个体项可以显着提高CG电位的准确性,从而改善CG模拟的准确性。

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