PaperPanorama

arXiv:1602.00496·v2·High Energy Physics — Phenomenology

Tests of Lorentz and CPT symmetry with hadrons and nuclei

J. P. Noordmans🇵🇹 · J. de Vries🇳🇱 · R. G. E. Timmermans🇳🇱

Abstract

We explore the breaking of Lorentz and CPT invariance in strong interactions at low energy in the framework of chiral perturbation theory. Starting from the set of Lorentz-violating operators of mass-dimension five with quark and gluon fields, we construct the effective chiral Lagrangian with hadronic and electromagnetic interactions induced by these operators. We develop the power-counting scheme and discuss loop diagrams and the one-pion-exchange nucleon-nucleon potential. The effective chiral Lagrangian is the basis for calculations of low-energy observables with hadronic degrees of freedom. As examples, we consider clock-comparison experiments with nuclei and spin-precession experiments with nucleons in storage rings. We derive strict limits on the dimension-five tensors that quantify Lorentz and CPT violation.

Comments: 38 pages, 1 figure, updated to match published version

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