Constraints on compact binary merger evolution from spin-orbit misalignment in gravitational-wave observations
arXiv:2108.10184 · doi:10.1093/mnras/stac029
Abstract
The identification of the first confirmed neutron star - black hole (NS-BH) binary mergers by the LIGO, Virgo and KAGRA collaboration provides the opportunity to investigate the properties of the early sample of confirmed and candidate events. Here, we focus primarily on the tilt angle of the black hole's spin relative to the orbital angular momentum vector of the binary, and the implications for the physical processes that determine this tilt. The posterior tilt distributions of GW200115 and the candidate events GW190426_152155 and GW190917_114630 peak at significantly anti-aligned orientations (though display wide distributions). Producing these tilts through isolated binary evolution would require stronger natal kicks than are typically considered (and preferentially-polar kicks would be ruled out), and/or an additional source of tilt such as stable mass transfer. The early sample of NS-BH events are less massive than expected for classical formation channels, and may provide evidence for efficient mass transfer that results in the merger of more massive NS-BH binaries before their evolution to the compact phase is complete. We predict that future gravitational-wave detections of NS-BH events will continue to display total binary masses of M and mass ratios of if this interpretation is correct. Conversely, the high mass of the candidate GW191219_163120 suggests a dynamical capture origin. Large tilts in a significant fraction of merging NS-BH systems would weaken the prospects for electromagnetic detection. However, EM observations, including non-detections, can significantly tighten the constraints on spin and mass ratio.
8 pages, 3 figures. Accepted for publication in MNRAS
References in corpus (36)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Advanced LIGO
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- An Ordinary Short Gamma-Ray Burst with Extraordinary Implications: Fermi-GBM Detection of GRB 170817A
- GW190521: A Binary Black Hole Merger with a Total Mass of
- Swope Supernova Survey 2017a (SSS17a), the Optical Counterpart to a Gravitational Wave Source
- 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
- Spectroscopic identification of r-process nucleosynthesis in a double neutron star merger
- INTEGRAL Detection of the First Prompt Gamma-Ray Signal Coincident with the Gravitational Wave Event GW170817
- A kilonova as the electromagnetic counterpart to a gravitational-wave source
- The X-ray counterpart to the gravitational wave event GW 170817
- Light Curves of the Neutron Star Merger GW170817/SSS17a: Implications for R-Process Nucleosynthesis
- Illuminating Gravitational Waves: A Concordant Picture of Photons from a Neutron Star Merger
- The Emergence of a Lanthanide-Rich Kilonova Following the Merger of Two Neutron Stars
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/Virgo GW170817. I. Dark Energy Camera Discovery of the Optical Counterpart
- Swift and NuSTAR observations of GW170817: detection of a blue kilonova
- 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
- A Radio Counterpart to a Neutron Star Merger
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. III. Optical and UV Spectra of a Blue Kilonova From Fast Polar Ejecta
- The discovery of the electromagnetic counterpart of GW170817: kilonova AT 2017gfo/DLT17ck
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Distinguishing Spin-Aligned and Isotropic Black Hole Populations With Gravitational Waves
- MASTER optical detection of the first LIGO/Virgo neutron stars merging GW170817
- Follow up of GW170817 and its electromagnetic counterpart by Australian-led observing programs
- Double neutron stars: merger rates revisited
- GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- The Galactic distribution of X-ray binaries and its implications for compact object formation and natal kicks
- Follow-up of the Neutron Star Bearing Gravitational Wave Candidate Events S190425z and S190426c with MMT and SOAR
- Black hole-neutron star mergers from triples
- Modelling Neutron Star-Black Hole Binaries: Future Pulsar Surveys and Gravitational Wave Detectors
- The landscape of disk outflows from black hole - neutron star mergers
- Flipping spins in mass transferring binaries and origin of spin-orbit misalignment in binary black holes
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- SEOBNRv5PHM: Next generation of accurate and efficient multipolar precessing-spin effective-one-body waveforms for binary black holes
- The Fast Flavor Instability in Hypermassive Neutron Star Disk Outflows
- Target of Opportunity Observations of Gravitational Wave Events with Vera C. Rubin Observatory
- Long-duration Gamma-ray Burst and Associated Kilonova Emission from Fast-spinning Black Hole--Neutron Star Mergers
- Population properties and multimessenger prospects of neutron star-black hole mergers following GWTC-3
- Population Properties of Gravitational-Wave Neutron Star--Black Hole Mergers
- A Channel to Form Fast-spinning Black Hole--Neutron Star Binary Mergers as Multi-messenger Sources
- Interplay of spin-precession and higher harmonics in the parameter estimation of binary black holes
- Accurate and Efficient Waveform Model for Precessing Binary Black Holes
- Large Eddy Simulations of Magnetized Mergers of Black Holes and Neutron Stars
- Multi-messenger prospects for black hole - neutron star mergers in the O4 and O5 runs
- Sensitivity of spin-aligned searches for neutron star-black hole systems using future detectors
- Mechanisms for high spin in black-hole neutron-star binaries and kilonova emission: inheritance and accretion
- Stripping of a neutron star in a close binary system in a pair with a black hole
- Modelling the formation of the first two neutron star-black hole mergers, GW200105 and GW200115: metallicity, chirp masses and merger remnant spins