Glassy Behavior and Jamming of a Random Walk Process for Sequentially Satisfying a Constraint Satisfaction Formula
Abstract
Random -satisfiability (-SAT) is a model system for studying typical-case complexity of combinatorial optimization. Recent theoretical and simulation work revealed that the solution space of a random -SAT formula has very rich structures, including the emergence of solution communities within single solution clusters. In this paper we investigate the influence of the solution space landscape to a simple stochastic local search process {\tt SEQSAT}, which satisfies a -SAT formula in a sequential manner. Before satisfying each newly added clause, {\tt SEQSAT} walk randomly by single-spin flips in a solution cluster of the old subformula. This search process is efficient when the constraint density of the satisfied subformula is less than certain value ; however it slows down considerably as and finally reaches a jammed state at . The glassy dynamical behavior of {\tt SEQSAT} for probably is due to the entropic trapping of various communities in the solution cluster of the satisfied subformula. For random 3-SAT, the jamming transition point is larger than the solution space clustering transition point , and its value can be predicted by a long-range frustration mean-field theory. For random -SAT with , however, our simulation results indicate that . The relevance of this work for understanding the dynamic properties of glassy systems is also discussed.
Keywords
Cite
@article{arxiv.0907.0295,
title = {Glassy Behavior and Jamming of a Random Walk Process for Sequentially Satisfying a Constraint Satisfaction Formula},
author = {Haijun Zhou},
journal= {arXiv preprint arXiv:0907.0295},
year = {2015}
}
Comments
10 pages, 6 figures, 1 table, a mistake of numerical simulation corrected, and new results added