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Coarse-graining strategy for molecular pair interactions: A reaction coordinate study for two-and three-dimensional systems

机译:分子对相互作用的粗磨策略:双向系统的反应坐标研究

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We investigate and provide optimal sets of reaction coordinates for mixed pairs of molecules displaying polar, uniaxial, or spherical symmetry in two and three dimensions. These coordinates are non-redundant, i.e., they implicitly involve the molecules' symmetries. By tabulating pair interactions in these coordinates, resulting tables are thus minimal in length and require a minimal memory space. The intended fields of application are computer simulations of large ensembles of molecules or colloids with rather complex interactions in a fluid or liquid crystalline phase at low densities. Using effective interactions directly in the form of tables can help bridging the time and length scales without introducing errors stemming from any modeling procedure. Finally, we outline an exemplary computational methodology for gaining an effective pair potential in these coordinates, based on the Boltzmann inversion principle, by providing a step-by-step recipe. Published by AIP Publishing.
机译:我们研究并提供了在两种和三维中显示极性,单轴或球形对称的混合分子的最佳反应坐标组。 这些坐标是非冗余的,即,它们隐含地涉及分子的对称性。 通过在这些坐标中制定对交互,因此长度最小的表格并需要最小的存储空间。 申请的预期领域是具有在低密度下的流体或液晶相中具有相当复杂的相互作用的分子或胶体的计算机模拟。 使用直接以表格的有效交互可以帮助桥接时间和长度尺度,而不会引入从任何建模过程中源的误差。 最后,通过提供逐步的配方,概述了用于基于Boltzmann反演原理在这些坐标中获得有效的对电位的示例性计算方法。 通过AIP发布发布。

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