English

Electroweak Interactions in a Chiral Effective Lagrangian for Nuclei

Nuclear Theory 2012-03-20 v1

Abstract

We have studied electroweak (EW) interactions in quantum hadrodynamics (QHD) effective field theory (EFT). The Lorentz-covariant EFT contains nucleon, pion, Δ\Delta, isoscalar scalar (σ\sigma) and vector (ω\omega) fields, and isovector vector (ρ\rho) fields. The lagrangian exhibits a nonlinear realization of (approximate) SU(2)LSU(2)RSU(2)_L \otimes SU(2)_R chiral symmetry and incorporates vector meson dominance. First, we discuss the EW interactions at the quark level. Then we include EW interactions in QHD EFT by using the background-field technique. The completed QHD EFT has a nonlinear realization of SU(2)LSU(2)RU(1)BSU(2)_L \otimes SU(2)_R \otimes U(1)_B (chiral symmetry and baryon number conservation), as well as realizations of other symmetries including Lorentz-invariance, CC, PP, and TT. Meanwhile, as we know, chiral symmetry is manifestly broken due to the nonzero quark masses; the PP and CC symmetries are also broken because of weak interactions. These breaking patterns are parameterized in a general way in the EFT. Moreover, we have included the Δ\Delta resonance as manifest degrees of freedom in our QHD EFT, with a discussion of the irrelevance of the well-known pathologies involving high-spin fields from the modern EFT perspective. This enables us to discuss physics at the kinematics where the resonance becomes important. As a result, the effective theory uses hadronic degrees of freedom, satisfies the constraints due to QCD (symmetries and their breaking pattern), and is calibrated to strong-interaction phenomena. Applications to (anti)neutrino scattering are briefly discussed.

Keywords

Cite

@article{arxiv.1110.2760,
  title  = {Electroweak Interactions in a Chiral Effective Lagrangian for Nuclei},
  author = {Brian D. Serot and Xilin Zhang},
  journal= {arXiv preprint arXiv:1110.2760},
  year   = {2012}
}

Comments

27 pages, 1 figure, intech.cls, submitted to "Quantum Field Theory", ISBN 979-953-307-392-6. (InTech, Rijeka, Croatia)

R2 v1 2026-06-21T19:19:21.618Z