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Stochastic Dynamics with Correct Sampling for Constrained Systems

机译:约束系统中具有正确采样的随机动力学

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In this paper we discuss thermostatting using stochastic methods for molecular simulations where constraints are present. For so-called impulsive thermostats, like the Andersen thermostat, the equilibrium temperature will differ significantly from the imposed temperature when a limited number of particles are picked and constraints are applied. We analyze this problem and give two rigorous solutions for it. A correct general treatment of impulsive stochastic thermostatting, including pairwise dissipative particle dynamics and stochastic forcing in the presence of constraints, is given and it is shown that the constrained canonical distribution is sampled rigorously. We discuss implementation issues such as second order Trotter expansions. The method is shown to rigorously maintain the correct temperature for the case of extended simple point charge (SPC/E) water simulations.
机译:在本文中,我们讨论了在存在约束的情况下使用随机方法进行分子模拟的恒温。对于像安德森(Andersen)温控器这样的脉冲式温控器,当拾取有限数量的颗粒并施加约束时,平衡温度将与施加的温度明显不同。我们分析了这个问题,并给出了两个严格的解决方案。给出了脉冲随机调温的正确一般处理方法,包括成对耗散粒子动力学和存在约束时的随机强迫,并证明了对约束正则分布进行了严格采样。我们讨论诸如二阶Trotter扩展之类的实现问题。对于扩展的简单点电荷(SPC / E)水模拟,该方法显示出能够严格保持正确的温度。

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