Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
arXiv:2006.14573 · doi:10.3847/2041-8213/aba74e
Abstract
On August 14, 2019, the LIGO and Virgo detectors observed GW190814, a gravitational-wave signal originating from the merger of a black hole with a compact object. GW190814's compact-binary source is atypical both in its highly asymmetric masses and in its lower-mass component lying between the heaviest known neutron star and lightest known black hole in a compact-object binary. If formed through isolated binary evolution, the mass of the secondary is indicative of its mass at birth. We examine the formation of such systems through isolated binary evolution across a suite of assumptions encapsulating many physical uncertainties in massive-star binary evolution. We update how mass loss is implemented for the neutronization process during the collapse of the proto-compact object to eliminate artificial gaps in the mass spectrum at the transition between neutron stars and black holes. We find it challenging for population modeling to match the empirical rate of GW190814-like systems whilst simultaneously being consistent with the rates of other compact binary populations inferred by gravitational-wave observations. Nonetheless, the formation of GW190814-like systems at any measurable rate requires a supernova engine model that acts on longer timescales such that the proto-compact object can undergo substantial accretion immediately prior to explosion, hinting that if GW190814 is the result of massive-star binary evolution, the mass gap between neutron stars and black holes may be narrower or nonexistent.
19 pages (9 pages main text + 8 pages appendices/references), 6 figures, 1 table, published in ApJL
References in corpus (32)
- The NumPy array: a structure for efficient numerical computation
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Multi-messenger Observations of a Binary Neutron Star Merger
- Binary interaction dominates the evolution of massive stars
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Origin of the heavy elements in binary neutron-star mergers from a gravitational wave event
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. II. UV, Optical, and Near-IR Light Curves and Comparison to Kilonova Models
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- An Ultraluminous X-ray Source Powered by An Accreting Neutron Star
- Pulsational Pair-Instability Supernovae
- The Combined Ultraviolet, Optical, and Near-Infrared Light Curves of the Kilonova Associated with the Binary Neutron Star Merger GW170817: Unified Data Set, Analytic Models, and Physical Implications
- Mind the gap: The location of the lower edge of the pair instability supernovae black hole mass gap
- Lidov-Kozai Cycles with Gravitational Radiation: Merging Black Holes in Isolated Triple Systems
- Merging black holes in young star clusters
- The Evolution of Massive Helium Stars Including Mass Loss
- Estimating the Contribution of Dynamical Ejecta in the Kilonova Associated with GW170817
- The Masses and Spins of Neutron Stars and Stellar-Mass Black Holes
- Eight New Millisecond Pulsars in NGC 6440 and NGC 6441
- The Explosion of Helium Stars Evolved With Mass Loss
- AGN Disks Harden the Mass Distribution of Stellar-mass Binary Black Hole Mergers
- On the Rate of Neutron Star Binary Mergers from Globular Clusters
- The properties of merging black holes and neutron stars across cosmic time
- Black hole mergers from quadruples
- The Formation and Gravitational-Wave Detection of Massive Stellar Black-Hole Binaries
- Fingerprints of binary black hole formation channels encoded in the mass and spin of merger remnants
- The Fate of Binaries in the Galactic Center: The Mundane and the Exotic
- A Population-Informed Mass Estimate for Pulsar J0740+6620
- Formation and merging of Mass Gap Black Holes in Gravitational Wave Merger Events from Wide Hierarchical Quadruple Systems
- Comment on "A non-interacting low-mass black hole -- giant star binary system"