Lune

SODA2026Top-tier venue

Local Gibbs sampling beyond local uniformity

Hongyang Liu, Chunyang Wang, Yitong Yin

2026Year

Abstract

Local samplers are algorithms that generate random samples based on local queries to highdimensional distributions, ensuring the samples follow the correct induced distributions while maintaining time complexity that scales locally with the query size. These samplers have broad applications, including deterministic approximate counting [HWY23, FGW + 23], sampling from infinite or high-dimensional Gibbs distributions [AJ22, HWY22], and providing local access to large random objects [BRY20].

In this work, we present local samplers for Gibbs distributions of spin systems. Specifically, we design linear-time local samplers for:

• spin systems with soft constraints, including the first local sampler for near-critical Ising models;

• truly repulsive spin systems, represented by the first local sampler for uniform proper 𝑞-colorings, with 𝑞 = 𝑂 (Δ) colors on graphs with maximum degree Δ. These local samplers are efficient beyond the "local uniformity" threshold, which imposes unconditional marginal lower bounds -a key assumption required by all prior local samplers. Our results show that, in general, local sampling is not significantly harder than global sampling for spin systems. As an application, our results also imply local algorithms for probabilistic inference in the same near-critical regimes.

Ask about this paper

Your agent reads all of it.

Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.

Questions to start from

Your agent calls

Luneget_paper_fulltext

Ask in Lune

Free to start. No credit card required.

lune papers fulltext 33e9a2dc-2ec8-4fff-9c18-e80da21e85c2

Builds on12

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines