Collective mode mining from molecular dynamics simulations: a comparative approach

V. D. Camiola, V. Tozzini
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引用次数: 2

Abstract

The evaluation of collective modes is fundamental in the analysis of molecular dynamics simulations. Several methods are available to extract that information, i.e normal mode analysis, principal component and spectral analysis of trajectories, basically differing by the quantity considered as the nodal one (frequency, amplitude, or pattern of displacement) and leading to the definition of different kinds of collective excitations and physical spectral observables. Different views converge in the harmonic regime and/or for homo-atomic systems. However, for anharmonic and out of equilibrium dynamics different quantities bring different information and only their comparison can give a complete view of the system behavior. To allow such a comparative analysis, we review and compare the different approaches, applying them in different combination to two examples of physical relevance: graphene and fullerene C60.
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从分子动力学模拟中挖掘集体模式:一种比较方法
集体模式的评价是分子动力学模拟分析的基础。有几种方法可用于提取这些信息,即轨道的正态分析,主成分和谱分析,基本上不同于被认为是节点的量(频率,振幅或位移模式),并导致不同种类的集体激励和物理光谱观测值的定义。不同的观点在调和区和/或同原子系统中趋于一致。然而,对于非调和和非平衡动力学,不同的量带来不同的信息,只有它们的比较才能给出系统行为的完整视图。为了进行这样的比较分析,我们回顾和比较了不同的方法,将它们以不同的组合应用于两个物理相关的例子:石墨烯和富勒烯C60。
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