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LiquidLib: A comprehensive toolbox for analyzing classical and ab initio molecular dynamics simulations of liquids and liquid-like matter with applications to neutron scattering experiments

机译:LiquidLib:一种综合工具箱,用于分析液体和液体的液体和液体的分子动力学模拟,具有中子散射实验的应用

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摘要

Neutron scattering is a powerful experimental technique for characterizing the structure and dynamics of materials on the atomic or molecular scale. However, the interpretation of experimental data from neutron scattering is oftentimes not trivial, partly because scattering methods probe ensemble-averaged information in the reciprocal space. Therefore, computer simulations, such as classical and ab initio molecular dynamics, are frequently used to unravel the time-dependent atomistic configurations that can reproduce the scattering patterns and thus assist in the understanding of the microscopic origin of certain properties of materials. LiquidLib is a post-processing package for analyzing the trajectory of atomistic simulations of liquids and liquid-like matter with application to neutron scattering experiments. From an atomistic simulation, LiquidLib provides the computation of various statistical quantities including the pair distribution function, the weighted and unweighted structure factors, the mean squared displacement, the non-Gaussian parameter, the four-point correlation function, the velocity auto correlation function, the self and collective van Hove correlation functions, the self and collective intermediate scattering functions, and the bond orientational order parameter. LiquidLib analyzes atomistic trajectories generated from packages such as LAMMPS, GROMACS, and VASP. It also offers an extendable platform to conveniently integrate new quantities into the library and integrate simulation trajectories of other file formats for analysis. Weighting the quantities by element-specific neutron-scattering lengths provides results directly comparable to neutron scattering measurements. Lastly, LiquidLib is independent of dimensionality, which allows analysis of trajectories in two, three, and higher dimensions. The code is beginning to find worldwide use.
机译:中子散射是一种强大的实验技术,用于表征原子或分子尺度上材料的结构和动态。然而,来自中子散射的实验数据的解释通常不差异,部分地是因为散射方法在往复空间中探测集合平均信息。因此,诸如经典和AB Initio分子动力学的计算机模拟经常用于解开可以再现散射模式的时间依赖的原子配置,从而帮助理解材料的某些性质的微观起源。 LiquidLib是一种后处理包装,用于分析液体和液体样物的原子模拟的轨迹,以应用于中子散射实验。从原子仿真来看,LiquidLIB提供了各种统计量的计算,包括对分布函数,加权和未加权的结构因素,平均平均位移,非高斯参数,四点相关函数,速度自相关函数,自我和集体van Hove相关函数,自我和集体中间散射功能,以及键定义阶参数。 LiquidLib分析从套餐,Gromacs和VAS等封装产生的原子轨迹。它还提供可扩展的平台,可以方便地将新数量集成到库中,并集成了其他文件格式的仿真轨迹进行分析。通过元素特定的中子散射长度加权量提供与中子散射测量直接相当的结果。最后,Liquietlib与维度无关,这允许分析两个,三个和更高尺寸的轨迹。该代码开始查找全世界使用。

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