A lower bound on the maximum mass if the secondary in GW190814 was once a rapidly spinning neutron star
arXiv:2006.14601 · doi:10.1093/mnrasl/slaa168
Abstract
The recent detection of GW190814 featured the merger of a binary with a primary having a mass of and a secondary with a mass of . While the primary was most likely a black hole, the secondary could be interpreted as either the lightest black hole or the most massive neutron star ever observed, but also as the indication of a novel class of exotic compact objects. We here argue that the secondary in GW190814 needs not be an ab-initio black hole nor an exotic object; rather, based on our current understanding of the nuclear-matter equation of state, it can be a rapidly rotating neutron star that collapsed to a rotating black hole at some point before merger. Using universal relations connecting the masses and spins of uniformly rotating neutron stars, we estimate the spin, , of the secondary -- a quantity not constrained so far by the detection -- and a novel strict lower bound on the maximum mass, , of nonrotating neutron stars, consistent with recent observations of a very massive pulsar. The new lower bound also remains valid even in the less likely scenario in which the secondary neutron star never collapsed to a black hole.
6 pages, 3 figures, Improved presentation and added new figure; results remain unchanged. Accepted by MNRAS Lett
References in corpus (11)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- A Massive Pulsar in a Compact Relativistic Binary
- Multi-messenger Observations of a Binary Neutron Star Merger
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- GW170817: Joint Constraint on the Neutron Star Equation of State from Multimessenger Observations
- Neutron-star radius constraints from GW170817 and future detections
- A General-relativistic Determination of the Threshold Mass to Prompt Collapse in Binary Neutron Star Mergers
- When Did the Remnant of GW170817 Collapse to a Black Hole?
- On the stability and maximum mass of differentially rotating relativistic stars
- Was GW190412 born from a hierarchical 3+1 quadruple configuration?
- Tides in merging neutron stars: Consistency of the GW170817 event with experimental data on finite nuclei