English

Large-$N_c$ and renormalization group constraints on parity-violating low-energy coefficients for three-derivative operators in pionless effective field theory

High Energy Physics - Phenomenology 2021-06-02 v1 Nuclear Theory

Abstract

We extend from operators with one derivative to operators with three derivatives the analysis of two-body hadronic parity violation in a combined pionless effective field theory (EFTπ ⁣/_{\pi\!/}) and large-NcN_c expansion, where NcN_c is the number of colors in quantum chromodynamics (QCD). In elastic scattering, these operators contribute to SS-PP and PP-DD wave transitions, with five operators and their accompanying low energy coefficients (LECs) characterizing the SS-PP transitions and six operators and LECs those in PP-DD transitions. We show that the large-NcN_c analysis separates them into leading order in NcN_c, next-to-leading order in NcN_c, etc. Relationships among EFTπ ⁣/_{\pi\!/} LECs emerge in the large-NcN_c expansion. We also discuss the renormalization scale dependence of these LECs. Our analysis can complement lattice QCD calculations and help prioritize future parity-violating experiments.

Keywords

Cite

@article{arxiv.2012.02180,
  title  = {Large-$N_c$ and renormalization group constraints on parity-violating low-energy coefficients for three-derivative operators in pionless effective field theory},
  author = {Son T. Nguyen and Matthias R. Schindler and Roxanne P. Springer and Jared Vanasse},
  journal= {arXiv preprint arXiv:2012.02180},
  year   = {2021}
}

Comments

17 pages, 6 figures