Measuring the Hubble constant with neutron star black hole mergers
arXiv:1804.07337 · doi:10.1103/PhysRevLett.121.021303
Abstract
The detection of GW170817 and the identification of its host galaxy have allowed for the first standard-siren measurement of the Hubble constant, with an uncertainty of . As more detections of binary neutron stars with redshift measurement are made, the uncertainty will shrink. The dominating factors will be the number of joint detections and the uncertainty on the luminosity distance of each event. Neutron star black hole mergers are also promising sources for advanced LIGO and Virgo. If the black hole spin induces precession of the orbital plane, the degeneracy between luminosity distance and the orbital inclination is broken, leading to a much better distance measurement. In addition neutron star black hole sources are observable to larger distances, owing to their higher mass. Neutron star black holes could also emit electromagnetic radiation: depending on the black hole spin and on the mass ratio, the neutron star can be tidally disrupted resulting in electromagnetic emission. We quantify the distance uncertainty for a wide range of black hole mass, spin and orientations and find that the 1- statistical uncertainty can be up to a factor of better than for a non-spinning binary neutron star merger with the same signal-to-noise ratio. The better distance measurement, the larger gravitational-wave detectable volume, and the potentially bright electromagnetic emission, imply that spinning black hole neutron star binaries can be the optimal standard siren sources as long as their astrophysical rate is larger than Gpcyr, a value allowed by current astrophysical constraints.
Updated a few leftovers from working version, typos. Closely matches version published in PRL - post-proofs
References in corpus (18)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- A gravitational-wave standard siren measurement of the Hubble constant
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- Comprehensive nucleosynthesis analysis for ejecta of compact binary mergers
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- A mildly relativistic wide-angle outflow in the neutron star merger GW170817
- Black Hole-Neutron Star Mergers: Disk Mass Predictions
- Upper limits on the rates of binary neutron star and neutron-star--black-hole mergers from Advanced LIGO's first observing run
- Black hole-neutron star mergers at realistic mass ratios: Equation of state and spin orientation effects
- Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
- Outflows from accretion disks formed in neutron star mergers: effect of black hole spin
- Accelerated gravitational-wave parameter estimation with reduced order modeling
- Neutrino transport in black hole-neutron star binaries: neutrino emission and dynamical mass ejection
- Finding the One: Identifying the Host Galaxies of Gravitational-Wave Sources
- Observational Selection Effects with Ground-based Gravitational Wave Detectors
- On similarity of binary black hole gravitational-wave skymaps: to observe or to wait?
Cited by in corpus (86)
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Properties of the binary neutron star merger GW170817
- A 2 per cent Hubble constant measurement from standard sirens within 5 years
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- First measurement of the Hubble constant from a dark standard siren using the Dark Energy Survey galaxies and the LIGO/Virgo binary-black-hole merger GW170814
- A gravitational-wave measurement of the Hubble constant following the second observing run of Advanced LIGO and Virgo
- Observation of Gravitational Waves from the Coalescence of a Compact Object and a Neutron Star
- Late universe decaying dark matter can relieve the H_0 tension
- Dark Energy in light of Multi-Messenger Gravitational-Wave astronomy
- Accurate precision Cosmology with redshift unknown gravitational wave sources
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- Forecasting the detection capabilities of third-generation gravitational-wave detectors using
- A statistical standard siren measurement of the Hubble constant from the LIGO/Virgo gravitational wave compact object merger GW190814 and Dark Energy Survey galaxies
- Exploring the sensitivity of gravitational wave detectors to neutron star physics
- Mitigation of the instrumental noise transient in gravitational-wave data surrounding GW170817
- Low-Latency Gravitational Wave Alerts for Multi-Messenger Astronomy During the Second Advanced LIGO and Virgo Observing Run
- Velocity correction for Hubble constant measurements from standard sirens
- Optical follow-up of the neutron star-black hole mergers S200105ae and S200115j
- Constraining the Inclination of Binary Mergers from Gravitational-wave Observations
- Neutron Star Mergers and How to Study Them
- Modelling Neutron Star-Black Hole Binaries: Future Pulsar Surveys and Gravitational Wave Detectors
- Cosmological constraints on late-universe decaying dark matter as a solution to the tension
- Unbiased Hubble constant estimation from binary neutron star mergers
- Incompleteness Matters Not: Inference of from BBH-galaxy cross-correlations
- Rapid Parameter Estimation of Gravitational Waves from Binary Neutron Star Coalescence using Focused Reduced Order Quadrature
- Constraining the Hubble constant to a precision of about 1% using multi-band dark standard siren detections
- Probing modified gravity theories and cosmology using gravitational-waves and associated electromagnetic counterparts
- Systematic uncertainty of standard sirens from the viewing angle of binary neutron star inspirals
- Can a black hole-neutron star merger explain GW170817, AT2017gfo, GRB170817A?
- Mass and star formation rate of the host galaxies of compact binary mergers across cosmic time
- Constraining the cosmological parameters using gravitational wave observations of massive black hole binaries and statistical redshift information
- Gravitational-Wave Detector Networks: Standard Sirens on Cosmology and Modified Gravity Theory
- Identifying when Precession can be Measured in Gravitational Waveforms
- Linking the rates of neutron star binaries and short gamma-ray bursts
- Serendipitous Discoveries of Kilonovae in the LSST Main Survey: Maximising Detections of Sub-Threshold Gravitational Wave Events
- Viewing angle of binary neutron star mergers
- The cosmological impact of future constraints on from gravitational-wave standard sirens
- Prospects for Measuring the Hubble Constant with Neutron-Star-Black-Hole Mergers
- Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies
- Gravitational wave observations, distance measurement uncertainties, and cosmology
- Cosmography with next-generation gravitational wave detectors
- Prospects of testing late-time cosmology with weak lensing of gravitational waves and galaxy surveys
- Joint constraints on cosmological parameters using future multi-band gravitational wave standard siren observations
- Probing gravity and growth of structure with gravitational waves and galaxies' peculiar velocity
- Leveraging gravitational-wave memory to distinguish neutron star--black hole binaries from black hole binaries
- Inspiral of a Spinning Black Hole--Magnetized Neutron Star Binary: Increasing Charge and Electromagnetic Emission
- Neutron star-black hole mergers in next generation gravitational-wave observatories
- An astrophysically motivated ranking criterion for low-latency electromagnetic follow-up of gravitational wave events
- Bayesian parameter estimation on boson-star binary signals with a coherent inspiral template and spin-dependent quadrupolar corrections
- Electromagnetic Signatures from the Tidal Tail of a Black Hole - Neutron Star Merger
- The Hubble constant tension with next-generation galaxy surveys
- A Measurement of the Hubble Constant using Gravitational Waves from the Binary Merger GW190814
- Unbiased likelihood-free inference of the Hubble constant from light standard sirens
- Using Gray Sirens to Resolve the Hubble-Lemaître Tension
- Where to find Electromagnetic Wave Counterparts of stellar-mass binary black hole mergers?
- Localization of Compact Binary Sources with Second Generation Gravitational-wave Interferometer Networks
- Mass$\unicode{x2013}$spin Re-Parameterization for Rapid Parameter Estimation of Inspiral Gravitational-Wave Signals
- Breaking bad degeneracies with Love relations: Improving gravitational-wave measurements through universal relations
- Standard siren cosmology in the era of the 2.5-generation ground-based gravitational wave detectors: bright and dark sirens of LIGO Voyager and NEMO
- Calibrating the cosmic distance ladder using gravitational-wave observations
- Constraining properties of neutron star merger outflows with radio observations
- Black holes, stationary clouds and magnetic fields
- Characterization of low-significance gravitational-wave compact binary sources
- Bayesian framework to infer the Hubble constant from the cross-correlation of individual gravitational wave events with galaxies
- Web application for galaxy-targeted follow-up of electromagnetic counterparts to gravitational wave sources
- Black-Hole Neutron Star Simulations with the BAM code: First Tests and Simulations
- Rapid identification of time-frequency domain gravitational wave signals from binary black holes using deep learning
- Gravitational wave cosmology and astrophysics with large spectroscopic galaxy surveys
- Multimessenger Universe with Gravitational Waves from Binaries
- Luminosity distance uncertainties from gravitational wave detections by third generation observatories
- Unveiling the Universe with Emerging Cosmological Probes
- Next-generation global gravitational-wave detector network: Impact of detector orientation on compact binary coalescence and stochastic gravitational-wave background searches
- Taming systematics in distance and inclination measurements with gravitational waves: role of the detector network and higher-order modes
- Fast and accurate parameter estimation of high-redshift sources with the Einstein Telescope
- The constraint ability of Hubble parameter by gravitational wave standard sirens on cosmological parameters
- Dark energy model with very large-scale inhomogeneity
- Gravitational lensing aided luminosity distance estimation for compact binary coalescences
- Sky localization of space-based detectors with time-delay interferometry
- Considering light-matter interactions in the Friedmann equations
- Search for exotic gravitational wave signals beyond general relativity using deep learning
- Measuring Hubble Constant with Dark Neutron Star-Black Hole Mergers
- Listening Across the Cosmic Time: Standard Sirens from Ground- and Space-Based Missions in the Next Decade
- The impact of precession and higher-order multipoles for gravitational wave cosmological inference
- Spatial Curvature and Large Scale Lorentz Violation
- Statistical biases in parametrized searches for gravitational-wave polarizations
- Gravitational-wave standard sirens and application in cosmology