ENTROPY DECAY IN THE SWENDSEN-WANG DYNAMICS ON Zd

被引:1
|
作者
Blanca, Antonio [1 ]
Caputo, Pietro [2 ]
Parisi, Daniel [2 ]
Sinclair, Alistair [3 ]
Vigoda, Eric [4 ]
机构
[1] Penn State Univ, Dept Comp Sci & Engn, State Coll, PA 16801 USA
[2] Univ Roma Tre, Dept Math, Rome, Italy
[3] Univ Calif Berkeley, Comp Sci Div, Berkeley, CA 94720 USA
[4] Georgia Tech, Sch Comp Sci, Atlanta, GA USA
来源
ANNALS OF APPLIED PROBABILITY | 2022年 / 32卷 / 02期
关键词
Swendsen-Wang; Potts model; mixing time; log-Sobolev; LOGARITHMIC SOBOLEV INEQUALITIES; RANDOM-CLUSTER DYNAMICS; LATTICE SPIN SYSTEMS; ONE-PHASE REGION; GLAUBER DYNAMICS; MODEL; EQUILIBRIUM; BOUNDARY;
D O I
10.1214/21-AAP1702
中图分类号
O21 [概率论与数理统计]; C8 [统计学];
学科分类号
020208 ; 070103 ; 0714 ;
摘要
We study the mixing time of the Swendsen-Wang dynamics for the ferromagnetic Ising and Potts models on the integer lattice Z(d). This dynamics is a widely used Markov chain that has largely resisted sharp analysis because it is nonlocal, that is, it changes the entire configuration in one step. We prove that, whenever strong spatial mixing (SSM) holds, the mixing time on any n-vertex cube in Z(d) is O (log n), and we prove this is tight by establishing a matching lower bound on the mixing time. The previous best known bound was O(n). S SM is a standard condition corresponding to exponential decay of correlations with distance between spins on the lattice and is known to hold in d = 2 dimensions throughout the high-temperature (single phase) region. Our result follows from a modified log-Sobolev inequality, which expresses the fact that the dynamics contracts relative entropy at a constant rate at each step. The proof of this fact utilizes a new factorization of the entropy in the joint probability space over spins and edges that underlies the Swendsen- Wang dynamics, which extends to general bipartite graphs of bounded degree. This factorization leads to several additional results, including mixing time bounds for a number of natural local and nonlocal Markov chains on the joint space, as well as for the standard random-cluster dynamics.
引用
收藏
页码:1018 / 1057
页数:40
相关论文
共 50 条
  • [1] Entropy Decay in the Swendsen-Wang Dynamics on Zd
    Blanca, Antonio
    Caputo, Pietro
    Parisi, Daniel
    Sinclair, Alistair
    Vigoda, Eric
    STOC '21: PROCEEDINGS OF THE 53RD ANNUAL ACM SIGACT SYMPOSIUM ON THEORY OF COMPUTING, 2021, : 1551 - 1564
  • [2] The Swendsen-Wang dynamics on trees
    Blanca, Antonio
    Chen, Zongchen
    Stefankovic, Daniel
    Vigoda, Eric
    RANDOM STRUCTURES & ALGORITHMS, 2023, 62 (04) : 791 - 831
  • [3] CUTOFF FOR THE SWENDSEN-WANG DYNAMICS ON THE LATTICE
    Nam, Danny
    Sly, Allan
    ANNALS OF PROBABILITY, 2019, 47 (06): : 3705 - 3761
  • [4] SCALING ANSATZ FOR SWENDSEN-WANG DYNAMICS
    KLEIN, W
    RAY, T
    TAMAYO, P
    PHYSICAL REVIEW LETTERS, 1989, 62 (02) : 163 - 166
  • [5] GPU acceleration of Swendsen-Wang dynamics
    Protzman, Tristan
    Giedt, Joel
    INTERNATIONAL JOURNAL OF MODERN PHYSICS C, 2024, 35 (01):
  • [6] A bounding chain for Swendsen-Wang
    Huber, M
    RANDOM STRUCTURES & ALGORITHMS, 2003, 22 (01) : 43 - 59
  • [7] Comparison of Swendsen-Wang and heat-bath dynamics
    Ullrich, Mario
    RANDOM STRUCTURES & ALGORITHMS, 2013, 42 (04) : 520 - 535
  • [8] A VECTORIZED ALGORITHM FOR CLUSTER FORMATION IN THE SWENDSEN-WANG DYNAMICS
    MINO, H
    COMPUTER PHYSICS COMMUNICATIONS, 1991, 66 (01) : 25 - 30
  • [9] Rapid mixing of Swendsen-Wang dynamics in two dimensions
    Ullrich, Mario
    DISSERTATIONES MATHEMATICAE, 2014, (502) : 5 - +
  • [10] MEAN-FIELD STUDY OF THE SWENDSEN-WANG DYNAMICS
    RAY, TS
    TAMAYO, P
    KLEIN, W
    PHYSICAL REVIEW A, 1989, 39 (11): : 5949 - 5953