Landscape modification meets spin systems: from torpid to rapid mixing, tunneling and annealing in the low-temperature regime
Michael C.H. Choi

TL;DR
This paper introduces a modified landscape approach for Metropolis dynamics that achieves rapid mixing and tunneling in low-temperature regimes, significantly improving over traditional methods in spin systems and energy models.
Contribution
It proposes a novel landscape transformation that enables polynomial-time mixing and optimization, with rigorous proofs and applications to classical models.
Findings
Modified landscape reduces critical height to O(1)
Proposed dynamics mix rapidly with polynomial dependence on system size and temperature
Achieves ground state approximation in O(N^4) time
Abstract
Given a target Gibbs distribution to sample from in the low-temperature regime on , in this paper we propose and analyze Metropolis dynamics that instead target an alternative distribution , where is a transformed Hamiltonian whose landscape is suitably modified and controlled by the parameters and and shares the same set of stationary points as . With appropriate tuning of these parameters, the major advantage of the proposed Metropolis dynamics on the modified landscape is that it enjoys an critical height while its stationary distribution maintains close proximity with the original target in the…
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Taxonomy
TopicsMarkov Chains and Monte Carlo Methods · Theoretical and Computational Physics · Stochastic processes and statistical mechanics
