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Counterions at Charged Cylinders: Criticality and Universality beyond Mean-Field Theory

机译:带电圆柱体上的抗衡离子:超越均值场理论的临界性和普遍性

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The counterfoil-condensation transition at charged cylinders is studied using Monte Carlo simulations. Employing logarithmically rescaled radial coordinates, large system sizes are tractable and the critical behavior is determined by a combined finite-size and finite-ion-number analysis. Critical counterion localization exponents are introduced and found to be in accord with mean-field theory both in two (2D) and three (3D) dimensions. In 3D, the heat capacity shows a universal jump at the transition, while in 2D, it consists of discrete peaks where single counterions successively condense.
机译:使用蒙特卡洛模拟研究了充气气缸的反箔冷凝过渡。使用对数重新缩放的径向坐标,可以轻松处理大型系统,并且通过组合有限大小和有限离子数分析来确定关键行为。引入了重要的抗衡离子局部指数,发现它们在二维(2D)和三维(3D)方面均符合均场理论。在3D中,热容在过渡处显示出普遍的跃迁,而在2D中,它由不连续的峰组成,单个反离子连续凝结。

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