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Potential Hessian Ascent IV: Sampling the Sherrington-Kirkpatrick model at β<1β< 1

Holden Lee, Juspreet Singh Sandhu, Jonathan Shi

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Source: arXiv

Published: Sep 24, 2026

arXiv: 2609.30590

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Source abstract

We give a polynomial-time algorithm to sample from the Gibbs measure of the Sherrington-Kirkpatrick (SK) model with on(1)o_n(1) error in total-variation distance (TVD) at any inverse-temperature β<1β< 1. The algorithm combines algorithmic stochastic localization (ASL) with rejection sampling over path-space via Jarzynski's equality (JE). The analysis extends the authors' prior β<1/2β< 1/2 result [arXiv:2605.03718] by replacing all global regularity requirements in the stochastic differential equation (SDE) error analysis with local regularity around likely trajectories. The relaxed regularity is established using Celentano's proof of the local strong convexity of the TAP free energy [arXiv:2208.09550]. The analysis utilizes the cavity interpolation theory and free probability toolkit developed in the authors' previous result, where the former applies nearly verbatim and the latter applies supplemented with Lipschitz and C2C^2 extensions of various functions. The ASL and JE analysis arises from using the TAP free energy as an efficiently computable proxy for the actual free energy of the stochastically localized Gibbs measure [§ § 3, arXiv:2605.03718]. We give a list of \vocab{desiderata} encapsulating the approximation and regularity properties required of the TAP free energy, relaxing those of [§ § 2.5, arXiv:2605.03718] to only require local regularity. These generic desiderata are potentially applicable in other settings where a free energy surrogate exists, giving algorithmic sampling guarantees while bypassing the usual functional inequalities based approach.

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Potential Hessian Ascent IV: Sampling the Sherrington-Kirkpatrick model at $β< 1$ — Mathematical Frontier Network