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The density distributions of the counterions and the coions confined in two similarly charged plates

机译:反荷离子和the离子的密度分布限制在两个带相似电荷的板上

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By using the field-theoretic method,we established a unified systematic formulation of a model of counterions and coions confined in two similarly charged plates,and calculated the density distributions of counterions and coions with various coupling parameters by the two methods:Poisson-Boltzmann (PB) approach and the strong coupling (SC) theory,respectively.We also performed Monte Carlo simulations,and obtained the density distributions of counterions and coions with several different coupling parameters.Comparing our theoretical results with those from Monte Carlo simulation,we find that the PB approach is valid when the coupling parameter XI is smaller than 1,but,as XI>=1,the results by the PB approach deviate from the corresponding Monte Carlo simulation data,and the deviation gets larger with the coupling parameter increasing.This shows that the PB approach is completely invalid when the coupling parameter is equal to 1 or larger than 1.For the latter case,the development trend of the distribution curve calculated by SC theory agrees with that from Monte Carlo simulation as the coupling parameter increases.This demonstrates that the SC theory can give a qualitative available explanation on the density distribution of the counterions in the system in which the coupling parameters are strictly confined.
机译:我们使用场论方法建立了一个统一的系统公式化,将一个限制在两个带相似电荷的板上的抗衡离子和co离子模型模型化,并通过两种方法计算了具有不同耦合参数的抗衡离子和and离子的密度分布:我们还分别进行了PB)方法和强耦合(SC)理论。我们还进行了Monte Carlo模拟,并获得了具有几个不同耦合参数的抗衡离子和co离子的密度分布。将我们的理论结果与Monte Carlo模拟的理论结果进行比较,发现当耦合参数XI小于1时,PB方法是有效的,但是当XI> = 1时,PB方法的结果与相应的蒙特卡洛模拟数据有偏差,并且随着耦合参数的增加,偏差也变大。表明当耦合参数等于1或大于1时PB方法完全无效。 f随着耦合参数的增加,SC理论计算的分布曲线与蒙特卡洛模拟的分布曲线吻合,这表明SC理论可以对耦合参数严格的系统中抗衡离子的密度分布给出定性的解释。密闭的。

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