Neutron stars and phase diagram in a hard-wall AdS/QCD model
Abstract
We study the phase diagram of (large-) QCD using a simplistic holographic hard-wall model with a dynamical scalar field and a homogeneous Ansatz representing a smeared instanton/baryon density. The resulting phase diagram is qualitatively consistent with expectations, including a mesonic, baryonic, quarkyonic, and quark-gluon plasma phase. As in other holographic models, we also find a baryonic popcorn transition, which appears at large chemical potential as a crossover. We then evaluate the nuclear matter equation of state, which turns out to be rather stiff with a large peaked sound velocity above the conformal limit, construct corresponding neutron stars using the TOV equations, and finally use a full numerical gravity/hydrodynamics computation to extract the gravitational wave signal of neutron star mergers.
Keywords
Cite
@article{arxiv.2202.12845,
title = {Neutron stars and phase diagram in a hard-wall AdS/QCD model},
author = {Lorenzo Bartolini and Sven Bjarke Gudnason and Josef Leutgeb and Anton Rebhan},
journal= {arXiv preprint arXiv:2202.12845},
year = {2022}
}
Comments
LaTeX: 45 pages, 12 figures; V2: references and further details added; V3: comments added and typos corrected