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驱动扩散系统中的最小电流相和通用边界层

Minimal current phase and universal boundary layers in driven diffusive systems.

作者信息

Hager J S, Krug J, Popkov V, Schütz G M

机构信息

Institut für Theoretische Physik, RWTH-Aachen, 52056 Aachen, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2001 May;63(5 Pt 2):056110. doi: 10.1103/PhysRevE.63.056110. Epub 2001 Apr 16.

Abstract

We investigate boundary-driven phase transitions in open driven diffusive systems. The generic phase diagram for systems with short-ranged interactions is governed by a simple extremal principle for the macroscopic current, which results from an interplay of density fluctuations with the motion of shocks. In systems with more than one extremum in the current-density relation, one finds a minimal current phase even though the boundaries support a higher current. The boundary layers of the critical minimal current and maximal current phases are argued to be of a universal form. The predictions of the theory are confirmed by Monte Carlo simulations of the two-parameter family of stochastic particle hopping models of Katz, Lebowitz, and Spohn and by analytical results for a related cellular automaton with deterministic bulk dynamics. The effect of disorder in the particle jump rates on the boundary layer profile is also discussed.

摘要

我们研究开放驱动扩散系统中的边界驱动相变。具有短程相互作用的系统的一般相图由宏观电流的一个简单极值原理支配,这是由密度涨落与激波运动的相互作用导致的。在电流 - 密度关系中有多个极值的系统中,即使边界支持更高的电流,也会发现一个最小电流相。临界最小电流相和最大电流相的边界层被认为具有通用形式。该理论的预测通过对Katz、Lebowitz和Spohn的两参数随机粒子跳跃模型家族进行蒙特卡罗模拟以及对具有确定性体动力学的相关元胞自动机的分析结果得到了证实。还讨论了粒子跳跃率中的无序对边界层轮廓的影响。

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