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Damped reaction field method and the accelerated convergence of the real space Ewald summation

机译:阻尼反应场法与实空间Ewald求和的加速收敛

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In this paper, we study a general theoretical framework which allows us to approximate the real space Ewald sum by means of effective force shifted screened potentials, together with a self term. Using this strategy it is possible to generalize the reaction field method, as a means to approximate the real space Ewald sum. We show that this method exhibits faster convergence of the Coulomb energy than several schemes proposed recently in the literature while enjoying a much more sound and clear electrostatic significance. In terms of the damping parameter of the screened potential, we are able to identify two clearly distinct regimes of convergence. First, a reaction field regime corresponding to the limit of small screening, where effective pair potentials converge faster than the Ewald sum. Second, an Ewald regime, where the plain real space Ewald sum converges faster. Tuning the screening parameter for optimal convergence occurs essentially at the crossover. The implication is that effective pair potentials are an alternative to the Ewald sum only in those cases where optimization of the convergence error is not possible. (c) 2014 AIP Publishing LLC.
机译:在本文中,我们研究了一个通用的理论框架,该框架使我们能够通过有效力转移的屏蔽电势以及一个自项来逼近实际空间Ewald和。使用这种策略,有可能推广反应场方法,作为逼近实际空间Ewald和的一种方法。我们表明,该方法比文献中最近提出的几种方案展现出更快的库仑能量收敛性,同时享有更为清晰和清晰的静电效果。根据屏蔽电位的阻尼参数,我们能够确定两种明显不同的收敛方式。首先,对应于小筛选的极限的反应场机制,其中有效对电位的收敛速度快于Ewald和。其次,是一个Ewald政权,其中纯实空间Ewald和的收敛速度更快。调整筛选参数以获得最佳收敛基本上发生在交叉点。这意味着仅在不可能优化收敛误差的情况下,有效对电位才可以替代Ewald和。 (c)2014 AIP Publishing LLC。

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