English

Lattice QCD spectroscopy for hadronic CP violation

High Energy Physics - Lattice 2017-05-11 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

The interpretation of nuclear electric dipole moment (EDM) experiments is clouded by large theoretical uncertainties associated with nonperturbative matrix elements. In various beyond-the-Standard Model scenarios nuclear and diamagnetic atomic EDMs are expected to be dominated by CP-violating pion-nucleon interactions that arise from quark chromo-electric dipole moments. The corresponding CP-violating pion-nucleon coupling strengths are, however, poorly known. In this work we propose a strategy to calculate these couplings by using spectroscopic lattice QCD techniques. Instead of directly calculating the pion-nucleon coupling constants, a challenging task, we use chiral symmetry relations that link the pion-nucleon couplings to nucleon sigma terms and mass splittings that are significantly easier to calculate. In this work, we show that these relations are reliable up to next-to-next-to-leading order in the chiral expansion in both SU(2) and SU(3) chiral perturbation theory. We conclude with a brief discussion about practical details regarding the required lattice QCD calculations and the phenomenological impact of an improved understanding of CP-violating matrix elements.

Keywords

Cite

@article{arxiv.1612.01567,
  title  = {Lattice QCD spectroscopy for hadronic CP violation},
  author = {Jordy de Vries and Emanuele Mereghetti and Chien-Yeah Seng and Andre Walker-Loud},
  journal= {arXiv preprint arXiv:1612.01567},
  year   = {2017}
}

Comments

16 pages, 2 figures; v2 version accepted for publication

R2 v1 2026-06-22T17:14:07.506Z