arXiv:1906.03445·v2·High Energy Physics — Lattice
Non-perturbative determination of improvement coefficients b_m and b_A-b_P and normalisation factor Z_m*Z_P/Z_A with N_f=3 Wilson fermions
Giulia Maria de Divitiis (Rome U. & INFN "Rome Tor Vergata")🇮🇹 · Patrick Fritzsch (CERN)🇨🇭 · Jochen Heitger (Muenster U.)🇩🇪 · Carl Christian Koester (Muenster U.)🇩🇪 · Simon Kuberski (Muenster U.)🇩🇪 · Anastassios Vladikas (INFN "Rome Tor Vergata")🇮🇹
Abstract
We determine non-perturbatively the normalisation constant Z_m*Z_P/Z_A as well as the Symanzik coefficients b_m and b_A-b_P, required in O(a) improved quark mass renormalisation with Wilson fermions. The strategy underlying their computation involves simulations in N_f=3 QCD with O(a) improved massless sea and non-degenerate valence quarks in the finite-volume Schroedinger functional scheme. Our results, which cover the typical gauge coupling range of large-volume N_f=2+1 QCD simulations with Wilson fermions at lattice spacings below 0.1 fm, are of particular use for the non-perturbative calculation of O(a) improved renormalised quark masses.
Comments: 36 pages including figures and tables, latex2e; version published in Eur. Phys. J. C; small additions to the text and reference added; results unchanged