English

Comprehensive study of mass modifications of light mesons in nuclear matter in the three-flavor extended Linear Sigma Model

Nuclear Theory 2020-04-08 v2 High Energy Physics - Phenomenology

Abstract

We present a comprehensive study of mass modifications of scalar, pseudo-scalar, vector, and axial-vector mesons in nuclear matter using the three-flavor extended Linear Sigma Model (eLSM) and the two-flavor Parity Doublet Model (PDM). The meson masses in nuclear matter are determined by calculating the one-loop nucleon corrections to the meson mean fields. As a result, we find all spin-00 meson masses except those of the pion, kaon, and the lightest scalar-isoscalar mesons decrease at finite baryon density. For spin-11 mesons, masses of all axial-vector mesons decrease in medium, and the density dependences of the ρ\rho and ω\omega meson masses strongly depend on the value of chiral invariant mass (M0M_0). Also, our results suggest M00.8GeVM_0\approx0.8\, {\rm GeV} is preferable.

Keywords

Cite

@article{arxiv.1908.10509,
  title  = {Comprehensive study of mass modifications of light mesons in nuclear matter in the three-flavor extended Linear Sigma Model},
  author = {Daiki Suenaga and Phillip Lakaschus},
  journal= {arXiv preprint arXiv:1908.10509},
  year   = {2020}
}

Comments

8 figures