English

Interplay between $\Delta$ Particles and Hyperons in Neutron Stars

High Energy Astrophysical Phenomena 2019-10-09 v1 Solar and Stellar Astrophysics Nuclear Theory

Abstract

We analyze the effects of including Δ(1232)\Delta(1232) isobars in an equation of state (EoS) for cold, β\beta-stable neutron star matter, employing relativistic nuclear mean field theory. The selected EoS reproduces the properties of nuclear matter and finite nuclei and, in the astrophysical context, allows for the presence of hyperons in neutron stars having masses larger than 2MM_{\odot}. We find that the composition and structure of neutron stars is critically influenced by the addition of the Δ\Delta isobars, which allows us to constrain their interaction with the meson fields taking into account astrophysical information. Imposing that the EoS is stable and ensures the existence of 2MM_{\odot} neutron stars, as well as requiring agreement with data of Δ\Delta excitation in nuclei, we find that, in the absence of other mechanisms stiffening the EoS at high densities, the interaction of the Δ\Delta isobars with the sigma and omega meson fields must be at least 10\% stronger than that of the nucleons. Moreover, the neutron star moment of inertia turns out to be sensitive to the presence of Δ\Delta isobars, whereas the inclusion of Δ\Delta isobars in the EoS allows for smaller stellar radii and for a lower value of the tidal deformability consistent with the analysis of the GW170817 merger event.

Keywords

Cite

@article{arxiv.1907.08583,
  title  = {Interplay between $\Delta$ Particles and Hyperons in Neutron Stars},
  author = {Patricia Ribes and Angels Ramos and Laura Tolos and Claudia Gonzalez-Boquera and Mario Centelles},
  journal= {arXiv preprint arXiv:1907.08583},
  year   = {2019}
}

Comments

13 pages, 9 figures, 1 table

R2 v1 2026-06-23T10:25:26.285Z