arXiv:2502.03145·v2·High Energy Physics — Lattice
Error Scaling of Sea Quark Isospin-Breaking Effects
Anian Altherr🇨🇭 · Isabel Campos🇪🇸 · Alessandro Cotellucci🇩🇪 · Roman Gruber🇨🇭 · Tim Harris🇨🇭 · Marina Krstić Marinković🇨🇭 · Letizia Parato🇨🇭 · Agostino Patella🇩🇪 · Sara Rosso🇩🇪 · Paola Tavella🇨🇭
Abstract
Sea-quark isospin-breaking effects (IBE) are difficult to compute since they require the evaluation of all-to-all propagators. However, the quest for high-precision calculations motivates a detailed study of these contributions. There are strong arguments that the stochastic error associated with these quantities should diverge in the continuum and infinite-volume limit, resulting in a possible bottleneck for the method. In this work, we present the study of the error scaling for these quantities using -improved Wilson fermions QCD with C-periodic boundary conditions in space, a pion mass MeV, a range of lattice spacings fm, and volumes fm. The analysis of the error as a function of the number of stochastic sources shows that we reach the gauge error for the dominant contributions. The errors do not show the leading order divergence for strong-IBE and for electromagnetic IBE, in the considered range of lattice spacings. On the other hand, our data are consistent with the predicted leading divergence .
Comments: 9 pages, 8 figures, RC* collaboration, Contribution to the 41st International Symposium on Lattice Field Theory, 28th July-3rd August 2024, University of Liverpool, United Kingdom. Corrected the bibliography, the abstract and equation 2