arXiv:2307.15674·v2·High Energy Physics — Lattice
Exploiting stochastic locality in lattice QCD: hadronic observables and their uncertainties
Mattia Bruno🇮🇹 · Marco Cè🇮🇹 · Anthony Francis🇹🇼 · Patrick Fritzsch🇮🇪 · Jeremy R. Green🇩🇪 · Maxwell T. Hansen🇬🇧 · Antonio Rago🇩🇰
Abstract
Because of the mass gap, lattice QCD simulations exhibit stochastic locality: distant regions of the lattice fluctuate independently. There is a long history of exploiting this to increase statistics by obtaining multiple spatially-separated samples from each gauge field; in the extreme case, we arrive at the master-field approach in which a single gauge field is used. Here we develop techniques for studying hadronic observables using position-space correlators, which are more localized, and compare with the standard time-momentum representation. We also adapt methods for estimating the variance of an observable from autocorrelated Monte Carlo samples to the case of correlated spatially-separated samples.
Comments: 45 pages, 16 figures, 3 tables. v2: version accepted for publication in JHEP