Probing Neutron Star Equation of State Universality with Gravitational Waves

arXiv:2609.05118 · gr-qc, astro-ph.HE, nucl-th · Submitted 2026-09-04 · Read on arXiv

gr-qc, astro-ph.HE, nucl-th

Submitted: 2026-09-04

Updated: 2026-09-04

Comments: 10 pages, 6 figures

License: http://creativecommons.org/licenses/by/4.0/

The gist: Current neutron star equation-of-state inferences assume that a common equation of state describes all neutron stars.

Terminology

Abstract

Current neutron star equation-of-state inferences assume that a common equation of state describes all neutron stars. However, poorly understood dense-matter physics may give rise to distinct long-lived stellar subpopulations following different mass--tidal-deformability relations, invalidating this assumption. In this Letter, we demonstrate that next-generation gravitational-wave observatories enable neutron star equation-of-state universality to be transformed from an assumption into a testable hypothesis. By combining hierarchical Bayesian inference with a piecewise-polytropic parametrization of the neutron star equation of state, we establish a framework for testing equation-of-state universality with next-generation gravitational-wave observatories. We find that about 30 (50) loud binary neutron star mergers with network SNRs above 100 are sufficient to provide compelling evidence for departures from equation-of-state universality, even if only 20% (10%) of the population exhibits one of the representative non-universality parametrizations considered here.

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