Rapid mixing of Swendsen–Wang dynamics in two dimensions

IF 1.5 3区 数学 Q1 MATHEMATICS
Mario Ullrich
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引用次数: 37

Abstract

We prove comparison results for the Swendsen-Wang (SW) dynamics, the heat-bath (HB) dynamics for the Potts model and the single-bond (SB) dynamics for the random-cluster model on arbitrary graphs. In particular, we prove that rapid mixing of HB implies rapid mixing of SW on graphs with bounded maximum degree and that rapid mixing of SW and rapid mixing of SB are equivalent. Additionally, the spectral gap of SW and SB on planar graphs is bounded from above and from below by the spectral gap of these dynamics on the corresponding dual graph with suitably changed temperature. As a consequence we obtain rapid mixing of the Swendsen-Wang dynamics for the Potts model on the two-dimensional square lattice at all non-critical temperatures as well as rapid mixing for the two-dimensional Ising model at all temperatures. Furthermore, we obtain new results for general graphs at high or low enough temperatures.
二维Swendsen-Wang动力学的快速混合
我们在任意图上证明了Swendsen-Wang (SW)动力学、Potts模型的热浴(HB)动力学和随机簇模型的单键(SB)动力学的比较结果。特别地,我们证明了在最大度有界的图上,HB的快速混合意味着SW的快速混合,并且SW的快速混合与SB的快速混合是等价的。此外,SW和SB在平面图上的谱隙由上到下由相应的对偶图上的谱隙限定,并适当地改变温度。因此,我们得到二维方形晶格上Potts模型的Swendsen-Wang动力学在所有非临界温度下的快速混合,以及二维Ising模型在所有温度下的快速混合。此外,在足够高或足够低的温度下,我们得到了一般图的新结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.80
自引率
0.00%
发文量
8
审稿时长
>12 weeks
期刊介绍: DISSERTATIONES MATHEMATICAE publishes long research papers (preferably 50-100 pages) in any area of mathematics. An important feature of papers accepted for publication should be their utility for a broad readership of specialists in the domain. In particular, the papers should be to some reasonable extent self-contained. The paper version is considered as primary. The following criteria are taken into account in the reviewing procedure: correctness, mathematical level, mathematical novelty, utility for a broad readership of specialists in the domain, language and editorial aspects. The Editors have adopted appropriate procedures to avoid ghostwriting and guest authorship.
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