Efficiently unquenching QCD+QED at O($\alpha$)
Abstract
We outline a strategy to efficiently include the electromagnetic interactions of the sea quarks in QCD+QED. When computing iso-spin breaking corrections to hadronic quantities at leading order in the electromagnetic coupling, the sea-quark charges result in quark-line disconnected diagrams which are challenging to compute precisely. An analysis of the variance of stochastic estimators for the relevant traces of quark propagators helps us to improve the situation for certain flavour combinations and space-time decompositions. We present preliminary numerical results for the variances of the corresponding contributions using an ensemble of domain-wall fermions generated by the RBC/UKQCD collaboration.
Cite
@article{arxiv.2301.03995,
title = {Efficiently unquenching QCD+QED at O($\alpha$)},
author = {Tim Harris and Vera Gülpers and Antonin Portelli and James Richings},
journal= {arXiv preprint arXiv:2301.03995},
year = {2026}
}
Comments
Fixed typos in eq. (8). 9 pages, 3 figures; contribution to the 39th International Symposium on Lattice Field Theory, Lattice 2022, Bonn, Germany