Quantum electrodynamics in finite volume and nonrelativistic effective field theories
arXiv:1502.06921 · doi:10.1016/j.physletb.2016.01.047
Abstract
Electromagnetic effects are increasingly being accounted for in lattice quantum chromodynamics computations. Because of their long-range nature, they lead to large finite-size effects over which it is important to gain analytical control. Nonrelativistic effective field theories provide an efficient tool to describe these effects. Here we argue that some care has to be taken when applying these methods to quantum electrodynamics in a finite volume.
8 LaTeX pages, 2 figures
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