Lattice $B$-field correlators for heavy quarks
Abstract
We analyze the color-magnetic (or "") field two-point function that encodes the finite-mass correction to the heavy quark momentum diffusion coefficient. The simulations are done on fine isotropic lattices in the quenched approximation at , using a range of gradient flow times for noise suppression and operator renormalization. The continuum extrapolation is performed at fixed flow time followed by a second extrapolation to zero flow time. Perturbative calculations to next-to-leading order of this correlation function, matching gradient-flowed correlators to MS-bar, are used to resolve nontrivial renormalization issues. We perform a spectral reconstruction based on perturbative model fits to estimate the coefficient of the finite-mass correction to the heavy quark momentum diffusion coefficient. The approach we present here yields high-precision data for the correlator with all renormalization issues incorporated at next-to-leading order, and is also applicable for actions with dynamical fermions.
Cite
@article{arxiv.2402.09337,
title = {Lattice $B$-field correlators for heavy quarks},
author = {Luis Altenkort and David de la Cruz and Olaf Kaczmarek and Guy D. Moore and Hai-Tao Shu},
journal= {arXiv preprint arXiv:2402.09337},
year = {2024}
}
Comments
12 pages, 9 figures