Search arXiv⌕ Search

arXiv · 2610.06612

Learning Low-Order Approximations of the Quark Propagator in Lattice QCD

Abstract

The hopping expansion is an important approximation of the quark propagator in lattice quantum chromodynamics, but it diverges for light quarks, which limits the scope of strong-coupling and finite-density simulations. We present an artificial scientific discovery framework using gauge-equivariant neural networks in the Clifford basis to extract interpretable approximations. Our approach yields improved low-order approximations that outperform the hopping expansion at identical computational cost. In the parameter regime where the hopping expansion fails, our approach identifies convergent behavior, thus suggesting a novel series expansion. The discovered approximations generalize to unseen gauge fields and volumes, enabling immediate implementation as plug-in replacements and a new theoretical understanding of quark-propagator expansions.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Simon Pfahler, Maren Käfferlein, Daniel Knüttel, Christoph Lehner, Tilo Wettig. 2026-10-05. Learning Low-Order Approximations of the Quark Propagator in Lattice QCD. https://arxiv.org/abs/2610.06612

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

The sigma meson ($f_0$) at finite temperature with truncated overlap fermions

We study the temperature dependence of meson screening masses in two-flavour lattice QCD using dynamical truncated overlap fermions, a type of lattice chiral fermions. The screening masses for the $π$, $ρ$, $a_1$, $a_0$, and the sigma $(f_0)$ mesons are extracted by computing spatial correlation functions. This exploratory study uses meson screening masses and the connected/disconnected decomposition of the scalar correlator as diagnostic observables to examine how the disconnected contribution changes across the pseudocritical region. Above the pseudocritical temperature $T_{\rm pc}$, the $π$ and $f_0$ screening masses become degenerate, consistent with chiral restoration. The $(ρ,a_1)$ pair also shows the expected degeneracy. Decomposition of the $f_0$ propagator reveals that the connected contribution dominates above $T_{\rm pc}$, while the disconnected part becomes significant below $T_{\rm pc}$, explaining the reduced statistical clarity observed at low $T$. These results demonstrate that dynamical truncated overlap fermion simulations can capture the qualitative thermal behaviour of the scalar sector.

hep-lat↗

Critical coupling and $Δ\langleϕ^2\rangle$ in three-dimensional $ϕ^4$ theory

We consider the $ϕ^4$ theory with $ϕ(x)\in\mathbb{R}$ in three Euclidean dimensions. For a variety of self-couplings $\hatλ$, the critical (bare) parameter $\hatμ_{0\mathrm{c}}^2(\hatλ)$ is determined where the lattice-regulated system changes from the symmetric phase to the broken phase. Next, we send the box volume to infinity and switch to a universal scheme; this yields $\hatμ_\mathrm{c}^2(\hatλ)$ for each simulated $\hatλ$. Finally, a continuum extrapolation gives $f_\mathrm{c}=\lim_{\hatλ\to0} \hatλ^2/\hatμ_\mathrm{c}^2(\hatλ)$, and we find $f_\mathrm{c} = 18.808(64)_{\mathrm{stat}}(45)_{\mathrm{sys}} = 18.808(78)_{\mathrm{tot}}$. In addition, $Δ\langleϕ^2\rangle_\mathrm{c}/λ= -0.00303(12)_{\mathrm{stat}}(12)_{\mathrm{sys}} = -0.00303(17)_{\mathrm{tot}}$ is determined in the combined continuum and infinite-volume limit.

hep-lat↗

Looking at radiative corrections to the $Σ^\pm\toΛe^\pm \barν$ semileptonic decay-rate ratio

We investigate the impact of radiative corrections on the ratio of the semileptonic decay rates $Σ^\pm\toΛe^\pm \barν$. Phenomenological analyses point to sizable radiative effects on the experimentally measured ratio. From a theoretical perspective, this observable is particularly appealing because several hadronic and electroweak contributions partially cancel in the ratio, providing a cleaner probe of electromagnetic effects. We identify the dominant contributions to the radiative corrections and develop the framework for a dedicated calculation. This represents a first step toward a precise theoretical description of baryon semileptonic decays, helping to assess their potential as precision tests of the Standard Model.

hep-lat↗