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| Preprint/Report | PUBDB-2020-01552 |
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2020
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Please use a persistent id in citations: doi:10.3204/PUBDB-2020-01552
Report No.: DESY-20-028; FERMILAB-PUB-20-123-T; ICCUB-20-007; MIT-CTP/5183; NT@UW-20-03; arXiv:2003.12130
Abstract: Systems with the quantum numbers of up to twelve charged and neutral pseudoscalar mesons, as well as one-, two-, and three-nucleon systems, are studied using dynamical lattice quantum chromodynamics and quantum electrodynamics (QCD+QED) calculations and effective field theory. QED effects on hadronic interactions are determined by comparing systems of charged and neutral hadrons after tuning the quark masses to remove strong isospin breaking effects. A non-relativistic effective field theory, which perturbatively includes finite-volume Coulomb effects, is analyzed for systems of multiple charged hadrons and found to accurately reproduce the lattice QCD+QED results. QED effects on charged multi-hadron systems beyond Coulomb photon exchange are determined by comparing the two- and three-body interaction parameters extracted from the lattice QCD+QED results for charged and neutral multi-hadron systems.
Keyword(s): quantum electrodynamics: effect ; effect: Coulomb ; effective field theory: nonrelativistic ; photon: exchange ; quark: mass ; lattice field theory ; hadron ; quantum chromodynamics ; three-body problem ; pseudoscalar meson ; quantum number ; finite size ; isospin
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Journal Article
Charged multihadron systems in lattice QCD+QED
Physical review / D 103(5), 054504 (2021) [10.1103/PhysRevD.103.054504]
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