Hyperon-mixed neutron star with universal many-body repulsion
Abstract
Neutron stars with large masses require the hard stiffness of equation of state (EoS) of neutron-star matter. On the other hand, hyperon mixing brings about remarkable softening of EoS. In order to solve this problem, a multi-pomeron exchange potential (MPP) is introduced as a model for the universal many-body repulsion in baryonic systems on the basis of the Extended Soft Core (ESC) baryon-baryon interaction. The strength of MPP is determined by analyzing the nucleus-nucleus scattering with the G-matrix folding model. The interactions in , and channels are shown to be consistent with experimental indications. The EoS in neutron-star matter with hyperon mixing is obtained from ESC in addition of MPP, and mass-radius relations of neutron stars are derived. The maximum mass is shown to reach even in the case of including hyperon mixing on the basis of model-parameters determined by terrestrial experiments.
Cite
@article{arxiv.1510.06099,
title = {Hyperon-mixed neutron star with universal many-body repulsion},
author = {Y. Yamamoto and T. Furumoto and N. Yasutake and Th. A. Rijken},
journal= {arXiv preprint arXiv:1510.06099},
year = {2016}
}
Comments
prepared for the 2015 EPJA Topical Issue on "Exotic Matter in Neutron Stars"