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On coarse projective integration for atomic deposition in amorphous systems

机译:关于非晶系统中原子沉积的粗投影积分

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Direct molecular dynamics simulation of atomic deposition under realistic conditions is notoriously challenging because of the wide range of time scales that must be captured. Numerous simulation approaches have been proposed to address the problem, often requiring a compromise between model fidelity, algorithmic complexity, and computational efficiency. Coarse projective integration, an example application of the "equation-free" framework, offers an attractive balance between these constraints. Here, periodically applied, short atomistic simulations are employed to compute time derivatives of slowly evolving coarse variables that are then used to numerically integrate differential equations over relatively large time intervals. A key obstacle to the application of this technique in realistic settings is the "lifting" operation in which a valid atomistic configuration is recreated from knowledge of the coarse variables. Using Ge deposition on amorphous SiO2 substrates as an example application, we present a scheme for lifting realistic atomistic configurations comprised of collections of Ge islands on amorphous SiO2 using only a few measures of the island size distribution. The approach is shown to provide accurate initial configurations to restart molecular dynamics simulations at arbitrary points in time, enabling the application of coarse projective integration for this morphologically complex system. (C) 2015 AIP Publishing LLC.
机译:众所周知,在现实条件下进行原子沉积的直接分子动力学模拟非常具有挑战性,因为必须捕获广泛的时间范围。已经提出了许多仿真方法来解决该问题,通常需要在模型逼真度,算法复杂度和计算效率之间折衷。粗投影积分是“无方程”框架的示例应用程序,它们在这些约束之间提供了有吸引力的平衡。在此,定期应用短原子模拟来计算缓慢发展的粗变量的时间导数,然后将其用于在较大的时间间隔内对微分方程进行数值积分。该技术在现实环境中应用的主要障碍是“提升”操作,在该操作中,根据对粗略变量的了解会重新创建有效的原子配置。以在非晶态SiO2衬底上的Ge沉积为例,我们提出了一种方案,仅使用少数几个岛尺寸分布的测量值,就可以提升包括在非晶态SiO2上的Ge岛的集合的真实原子构型。结果表明,该方法可提供准确的初始配置,以便在任意时间点重新启动分子动力学模拟,从而能够对该形态复杂的系统应用粗投影积分。 (C)2015 AIP Publishing LLC。

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