English

Corrections to Landau Fermi-liquid fixed-point approximation in nonlinear bosonized theory: Application to $g_A^L$ in nuclei

Nuclear Theory 2023-11-30 v3 High Energy Physics - Phenomenology

Abstract

We calculated in nonlinear bosonized theory 1/Nˉ1/\bar{N} corrections to the Landau Fermi-liquid fixed-point (FLFP) axial-vector coupling constant in nuclear matter gAL1g_A^L\approx 1 to which the Landau parameter F1ωF_1^\omega predominantly contributes. We obtain the correction to F1ωF_1^\omega to calculate the correction δgAL\delta g_A^L to the axial-vector coupling constant gALg_A^L at the nuclear saturation density. It comes out to be extremely small, δgALO(104)\delta g_A^L\sim O(10^{-4}). We discuss how the "dilaton-limit fixed-point (DLFP)" result gA=1g_A=1 can be preserved from finite nuclei to high densities relevant to massive neutron stars and its possible impact on 0νββ0\nu\beta\beta decay processes involved in going beyond the Standard Model.

Keywords

Cite

@article{arxiv.2311.15085,
  title  = {Corrections to Landau Fermi-liquid fixed-point approximation in nonlinear bosonized theory: Application to $g_A^L$ in nuclei},
  author = {Long-Qi Shao and Mannque Rho},
  journal= {arXiv preprint arXiv:2311.15085},
  year   = {2023}
}

Comments

Acknowledgment removed