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Accurate configurational and kinetic statistics in discrete-time Langevin systems

机译:离散时间Langevin系统中准确的配置和动力学统计

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We expand on the previously published Gronbech-Jensen Farago (GJF) thermostat, which is a thermodynamically sound variation on the Stormer-Verlet algorithm for simulating discrete-time Langevin equations. The GJF method has been demonstrated to give robust and accurate configurational sampling of the phase space, and its applications to, e.g. Molecular Dynamics is well established. A new definition of the discrete-time velocity variable is proposed based on analytical calculations of the kinetic response of a harmonic oscillator subjected to friction and noise. The new companion velocity to the GJF method is demonstrated to yield exact and time-step-independent kinetic responses for, e.g. kinetic energy, its fluctuations, and Green-Kubo diffusion based on velocity autocorrelations. This observation allows for a new and convenient Leap-Frog algorithm, which efficiently and exactly represents statistical measures of both kinetic and configurational properties at any time step within the stability limit for systems in linear and harmonic potentials. We outline the simplicity of the algorithm and demonstrate its attractive time-step-independent features for nonlinear and complex systems through applications to a one-dimensional nonlinear oscillator and three-dimensional Molecular Dynamics.
机译:我们在前发布的Gronbech-Jensen Farago(GJF)恒温器上展开,这是用于模拟离散时间Langevin方程的Stormer-Verlet算法的热力学声音变化。已经证明了GJF方法以提供相位空间的强大和准确的配置采样,以及其应用,例如,其应用分子动力学已确定。基于对经历摩擦和噪声的谐波振荡器的动力学响应的分析计算,提出了一种离散时间速度变量的新定义。对GJF方法的新伴侣速度进行说明,以产生精确和时间逐步的动力学反应,例如,基于速度自相关的动能,其波动和绿色kubo扩散。该观察允许新的和方便的跨越式梯队算法,其有效地,并且在线性和谐波电位的系统的稳定性限制内的任何时间步骤中的动力学和配置属性的统计测量。我们概述了算法的简单性,并通过应用于一维非线性振荡器和三维分子动力学来展示其对非线性和复杂系统的有吸引力的时间级别特征。

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