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The field theory approach to percolation processes

机译:渗流过程的场论方法

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We review the field theory approach to percolation processes. Specifically, we focus on the so-called simple and general epidemic processes that display continuous non-equilibrium active to absorbing state phase transitions whose asymptotic features are governed, respectively, by the directed (DP) and dynamic isotropic percolation (dIP) universality classes. We discuss the construction of a field theory representation for these Markovian stochastic processes based on fundamental phenomenological considerations, as well as from a specific microscopic reaction-diffusion model realization. Subsequently we explain how dynamic renormalization group (RG) methods can be applied to obtain the universal properties near the critical point in an expansion about the upper critical dimensions d(c) = 4 (DP) and 6 (dIP). We provide a detailed overview of results for critical exponents, scaling functions, crossover phenomena, finite-size scaling, and also briefly comment on the influence of long-range spreading, the presence of a boundary, multispecies generalizations, coupling of the order parameter to other conserved modes, and quenched disorder. (C) 2004 Elsevier Inc. All rights reserved.
机译:我们回顾了渗流过程的场论方法。具体来说,我们关注于所谓的简单和一般的流行过程,这些过程显示出连续的非平衡活性到吸收状态相变,其渐进特征分别由有向(DP)和动态各向同性渗滤(dIP)通用性类支配。我们讨论了基于基本现象学考虑以及特定的微观反应扩散模型实现的,用于这些马尔可夫随机过程的场论表示的构建。随后,我们解释了如何使用动态重归一化组(RG)方法来获得关于临界点d(c)= 4(DP)和6(dIP)的展开中的临界点附近的通用属性。我们提供了关键指数,定标函数,交叉现象,有限大小定标的结果的详细概述,还简要评论了远程扩展,边界的存在,多物种概括,阶数参数与其他保守模式和猝灭障碍。 (C)2004 Elsevier Inc.保留所有权利。

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