On the Sound Speed in Neutron Stars
Abstract
Determining the sound speed in compact stars is an important open question with numerous implications on the behaviour of matter at large densities and hence on gravitational-wave emission from neutron stars. To this scope, we construct more than equations of state (EOSs) with continuous sound speed and build more than nonrotating stellar models consistent not only with nuclear theory and perturbative QCD, but also with astronomical observations. In this way, we find that EOSs with sub-conformal sound speeds, i.e. with within the stars, are possible in principle but very unlikely in practice, being only of our sample. Hence, it is natural to expect that somewhere in the stellar interior. Using our large sample, we obtain estimates at credibility of neutron-star radii for representative stars with and solar masses, , , and for the binary tidal deformability of the GW170817 event, . Interestingly, our lower-bounds on the radii are in very good agreement with the prediction derived from very different arguments, namely, the threshold mass. Finally, we provide simple analytic expressions to determine the minimum and maximum values of as a function of the chirp mass.
Keywords
Cite
@article{arxiv.2203.14974,
title = {On the Sound Speed in Neutron Stars},
author = {Sinan Altiparmak and Christian Ecker and Luciano Rezzolla},
journal= {arXiv preprint arXiv:2203.14974},
year = {2022}
}
Comments
6 pages + Appendix, 11 figures, version published in ApJL