Finite-Volume Corrections to Electromagnetic Masses for Larger-Than-Physical Electric Charges
arXiv:1702.01296 · doi:10.1103/PhysRevD.95.094510
Abstract
The numerical value of the fine-structure constant generally leads to small isospin-breaking effects due to electromagnetism in QCD. This smallness complicates determining isospin breaking from lattice QCD computations that include electromagnetism. One solution to this problem consists of performing computations using larger-than-physical values of the electric charge, and subsequently extrapolating (or interpolating) to the physical value of the fine-structure constant. Motivated by recent lattice QCD + QED computations of electromagnetic masses employing this setup, we consider finite-volume effects arising from the use of larger-than-physical electric charges. A modified power-counting scheme, which is based on treating the fine-structure constant as larger than its physical value, is explored. Results for perturbative QED corrections, however, are surprising. Within the framework of non-relativistic QED, multi-loop diagrams exhibit a momentum factorization property that produces exact cancellations. We determine that power-law finite-volume effects vanish at the leading two- and three-loop order, as well as the next-to-leading two-loop order. For larger-than-physical charges, we consequently expect no appreciable volume corrections beyond leading-order QED.
16 pages, 10 figures, v2 calculations corrected and conclusions updated
References in corpus (7)
- Ab initio calculation of the neutron-proton mass difference
- Electromagnetic mass splittings of the low lying hadrons and quark masses from 2+1 flavor lattice QCD+QED
- QED Corrections to Hadronic Processes in Lattice QCD
- Determination of light quark masses from the electromagnetic splitting of pseudoscalar meson masses computed with two flavors of domain wall fermions
- Three-boson problem at low energy and Implications for dilute Bose-Einstein condensates
- Two-Particle Elastic Scattering in a Finite Volume Including QED
- Electromagnetic corrections to leptonic decay rates of charged pseudoscalar mesons: finite-volume effects
Cited by in corpus (5)
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- Theoretical aspects of quantum electrodynamics in a finite volume with periodic boundary conditions
- Electromagnetic finite-size effects to the hadronic vacuum polarization
- Isospin splittings in the decuplet baryon spectrum from dynamical QCD+QED