Constraining self-interacting fermionic dark matter in admixed neutron stars using multimessenger astronomy
Abstract
We investigate the structure of admixed neutron stars with a regular hadronic component and a fraction of fermionic self-interacting dark matter. Using two limiting equations of state for the dense baryonic interior, constructed from piecewise generalised polytropes, and an asymmetric self-interacting fermionic dark component, we analyse different scenarios of admixed neutron stars depending on the mass of dark fermions , interaction mediators , and self-interacting strengths . We find that the contribution of dark matter to the masses and radii of neutron stars leads to tension with mass estimates of the pulsar J0453+1559, the least massive neutron star, and with the constraints coming from the GW170817 event. We discuss the possibilities of constraining dark matter model parameters and , using current existing knowledge on neutron star estimations of mass, radius, and tidal deformability, along with the accepted cosmological dark matter freeze-out values and self-interaction cross-section to mass ratio, , fitted to explain Bullet, Abell, and dwarf galaxy cluster dynamics. By assuming the most restrictive upper limit, cm/g, along with dark matter freeze-out range values, the allowed - region is , with . For the first time, the combination of updated complementary restrictions is used to set constraints on self-interacting dark matter.
Keywords
Cite
@article{arxiv.2311.14004,
title = {Constraining self-interacting fermionic dark matter in admixed neutron stars using multimessenger astronomy},
author = {Mauro Mariani and Conrado Albertus and M. del Rosario Alessandroni and Milva G. Orsaria and M. Ángeles Pérez-García and Ignacio F. Ranea-Sandoval},
journal= {arXiv preprint arXiv:2311.14004},
year = {2023}
}
Comments
12 pages, 9 figures. Accepted for publication in MNRAS. Comments are welcome