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Understanding three-body contributions to coarse-grained force fields

机译:了解粗粒粒度的三体捐款

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Coarse-graining is a systematic reduction of the number of degrees of freedom used to describe a system of interest. Coarse-graining can be thought of as a projection on the coarse-grained degrees of freedom and is therefore dependent on the number and type of basis functions used to represent the coarse-grained force field. We show that many-body extensions of the coarse-grained force field can result in substantial changes of the two-body interactions, making them much more attractive at short distances. This interplay can be alleviated by first parametrizing the two-body potential and then fitting the additional three-body contribution to the residual forces. The approach is illustrated on liquid water where three-body interactions are essential to reproduce the structural properties, and liquid methanol where two-body interactions are sufficient to reproduce the main structural features of the atomistic system. Furthermore, we demonstrate that the structural and thermodynamic accuracy of the coarse-grained models can be controlled by varying the magnitude of the three-body interactions. Our findings motivate basis set extensions which separate the many-body contributions of different order.
机译:粗晶是用于描述感兴趣系统的自由度的系统减少。粗晶可以被认为是在粗粒度的自由度上的突起,因此取决于用于表示粗粒粒子的基本函数的数量和类型。我们表明,粗粒粒度的许多身体延伸可能导致双体相互作用的大量变化,使它们在短距离中更具吸引力。通过首先参加双体电位,然后将这种相互阵列拟合到残余力的额外三体贡献,可以减轻这种相互作用。该方法在液态水上示出,其中三体相互作用对于再现结构性质,以及双体相互作用足以再现原子系统的主要结构特征的液体甲醇。此外,我们证明可以通过改变三体相互作用的大小来控制粗粒模型的结构和热力学精度。我们的研究结果激励了基础设定的延伸,这些延伸是分开不同订单的许多机构贡献。

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