English

QCD sum rules for the $\Delta$ isobar in neutron matter

Nuclear Theory 2018-09-05 v4 High Energy Physics - Phenomenology

Abstract

We study the properties of the Δ\Delta isobar in the symmetric and asymmetric nuclear matter using the QCD sum rules approach based on the energy dispersion relation. Allowing for different continuum thresholds for the polarization tensors with different dimensions, we find stable masses for the Δ\Delta in both the vacuum and the medium. Compared to the nucleon case, we find that the vector repulsion is smaller for the Δ\Delta while the scalar attraction is similar (75 MeV vector repulsion and 150 MeV scalar attraction in the symmetric matter). The smaller vector repulsion can be understood using the Pauli principle and a constituent quark model. Also the isospin dependence of the quasiparticle energy, which mainly comes from the vector self energy, is quite weak. We also allow for an explicit πN\pi -N continuum contribution to the polarization function, but find its effect to be minimal. Phenomenological consequences of our results are discussed.

Keywords

Cite

@article{arxiv.1806.01668,
  title  = {QCD sum rules for the $\Delta$ isobar in neutron matter},
  author = {Jesuel Marques L. and Su Houng Lee and Aaron Park and R. D. Matheus and Kie Sang Jeong},
  journal= {arXiv preprint arXiv:1806.01668},
  year   = {2018}
}

Comments

18 pages, 6 figure, Updated version as revised in the publication

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