English

Hyperon Puzzle of Neutron Stars with Skyrme Force Models

Nuclear Theory 2016-01-27 v2 Solar and Stellar Astrophysics High Energy Physics - Phenomenology

Abstract

We consider the so called hyperon puzzle of neutron star (NS). We employ Skyrme force models for the description of in-medium nucleon-nucleon, nucleon-Lambda hyperon (NΛN\Lambda), and Lambda-Lambda (ΛΛ\Lambda\Lambda) interactions. A phenomenological finite-range force for the ΛΛ\Lambda\Lambda interaction is considered as well. Equation of state (EoS) of NS matter is obtained in the framework of density functional theory, and Tolman-Oppenheimer-Volkoff equations are solved to obtain the mass-radius relations of NSs. It has been generally known that the existence of hyperons in the NS matter is not well supported by the recent discovery of large-mass NSs (M2MM \simeq 2 M_\odot) since hyperons make the EoS softer than the one without them. For the selected interaction models, NΛN\Lambda interactions reduce the maximum mass of NS by about 30~\%, while ΛΛ\Lambda\Lambda interactions can give about 10~\% enhancement. Consequently, we find that some Skyrme force models predict the maximum mass of NS consistent with the observation of 2M2 M_\odot NSs, and at the same time satisfy observationally constrained mass-radius relations.

Keywords

Cite

@article{arxiv.1412.5722,
  title  = {Hyperon Puzzle of Neutron Stars with Skyrme Force Models},
  author = {Yeunhwan Lim and Chang Ho Hyun and Kyujin Kwak and Chang-Hwan Lee},
  journal= {arXiv preprint arXiv:1412.5722},
  year   = {2016}
}

Comments

24 pages, published in International Journal of Modern Physics E