Massive Photons: An Infrared Regularization Scheme for Lattice QCD+QED

Standard methods for including electromagnetic interactions in lattice quantum chromodynamics calculations result in power-law finite-volume corrections to physical quantities. Removing these by extrapolation requires costly computations at multiple volumes. We introduce a photon mass to alternative...

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Veröffentlicht in:Physical review letters 2016-08, Vol.117 (7), p.072002-072002, Article 072002
Hauptverfasser: Endres, Michael G, Shindler, Andrea, Tiburzi, Brian C, Walker-Loud, André
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Sprache:eng
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Zusammenfassung:Standard methods for including electromagnetic interactions in lattice quantum chromodynamics calculations result in power-law finite-volume corrections to physical quantities. Removing these by extrapolation requires costly computations at multiple volumes. We introduce a photon mass to alternatively regulate the infrared, and rely on effective field theory to remove its unphysical effects. Electromagnetic modifications to the hadron spectrum are reliably estimated with a precision and cost comparable to conventional approaches that utilize multiple larger volumes. A significant overall cost advantage emerges when accounting for ensemble generation. The proposed method may benefit lattice calculations involving multiple charged hadrons, as well as quantum many-body computations with long-range Coulomb interactions.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.117.072002