Measuring a cosmological distance-redshift relationship using only gravitational wave observations of binary neutron star coalescences
arXiv:1107.5725 · doi:10.1103/PhysRevLett.108.091101
Abstract
Detection of gravitational waves from the inspiral phase of binary neutron star coalescence will allow us to measure the effects of the tidal coupling in such systems. These effects will be measurable using 3rd generation gravitational wave detectors, e.g. the Einstein Telescope, which will be capable of detecting inspiralling binary neutron star systems out to redshift z=4. Tidal effects provide additional contributions to the phase evolution of the gravitational wave signal that break a degeneracy between the system's mass parameters and redshift and thereby allow the simultaneous measurement of both the effective distance and the redshift for individual sources. Using the population of O(10^3-10^7) detectable binary neutron star systems predicted for the Einstein Telescope the luminosity distance--redshift relation can be probed independently of the cosmological distance ladder and independently of electromagnetic observations. We present the results of a Fisher information analysis applied to waveforms assuming a subset of possible neutron star equations of state. We conclude that for our range of representative neutron star equations of state the redshift of such systems can be determined to an accuracy of 8-40% for z<1 and 9-65% for 1<z<4.
5 pages, 1 figure, submitted to Phys. Rev. Lett
References in corpus (16)
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Sensitivity Studies for Third-Generation Gravitational Wave Observatories
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- The missing link: Merging neutron stars naturally produce jet-like structures and can power short Gamma-Ray Bursts
- Astrophysical Measurement of the Equation of State of Neutron Star Matter
- Post-1-Newtonian tidal effects in the gravitational waveform from binary inspirals
- Binary Neutron Star Mergers: Dependence on the Nuclear Equation of State
- Determination of Dark Energy by the Einstein Telescope: Comparing with CMB, BAO and SNIa Observations
- Precision of Hubble constant derived using black hole binary absolute distances and statistical redshift information
- Calibration of the LIGO Gravitational Wave Detectors in the Fifth Science Run
- Analytic modelling of tidal effects in the relativistic inspiral of binary neutron stars
- Will black hole-neutron star binary inspirals tell us about the neutron star equation of state?
- Accurate numerical simulations of inspiralling binary neutron stars and their comparison with effective-one-body analytical models
- Constraining the dark energy equation of state using LISA observations of spinning Massive Black Hole binaries
- Tracing the redshift evolution of Hubble parameter with gravitational-wave standard sirens
Cited by in corpus (174)
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Testing General Relativity with Present and Future Astrophysical Observations
- Exploring the Sensitivity of Next Generation Gravitational Wave Detectors
- Science Case for the Einstein Telescope
- Challenges for CDM: An update
- Black holes, gravitational waves and fundamental physics: a roadmap
- Binary neutron-star mergers: a review of Einstein's richest laboratory
- Science with the Einstein Telescope: a comparison of different designs
- Approximate Universal Relations for Neutron Stars and Quark Stars
- Systematic parameter errors in inspiraling neutron star binaries
- Inference of the cosmological parameters from gravitational waves: application to second generation interferometers
- Modeling the complete gravitational wave spectrum of neutron star mergers
- Systematic and statistical errors in a bayesian approach to the estimation of the neutron-star equation of state using advanced gravitational wave detectors
- Constraints on the cosmic expansion history from GWTC-3
- A gravitational-wave measurement of the Hubble constant following the second observing run of Advanced LIGO and Virgo
- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- Neutron Star Extreme Matter Observatory: A kilohertz-band gravitational-wave detector in the global network
- Cosmology with the lights off: Standard sirens in the Einstein Telescope era
- Cosmological Inference using Gravitational Wave Standard Sirens: A Mock Data Challenge
- Modified gravitational-wave propagation and standard sirens
- Dynamical mass ejection from black hole-neutron star binaries
- Estimating cosmological parameters by the simulated data of gravitational waves from the Einstein Telescope
- Multiband Gravitational-Wave Astronomy: Observing binary inspirals with a decihertz detector, B-DECIGO
- Dark Energy in light of Multi-Messenger Gravitational-Wave astronomy
- Accurate precision Cosmology with redshift unknown gravitational wave sources
- Prospects for doubling the range of Advanced LIGO
- The Gravitational-Wave Physics
- A Mock Data Challenge for the Einstein Gravitational-Wave Telescope
- Precision cosmology from future lensed gravitational wave and electromagnetic signals
- How Gravitational-wave Observations Can Shape the Gamma-ray Burst Paradigm
- A novel scheme for rapid parallel parameter estimation of gravitational waves from compact binary coalescences
- Anisotropic mass ejection from black hole-neutron star binaries: Diversity of electromagnetic counterparts
- Localization accuracy of compact binary coalescences detected by the third-generation gravitational-wave detectors and implication for cosmology
- Observing and measuring the neutron-star equation-of-state in spinning binary neutron star systems
- Spectral sirens: cosmology from the full mass distribution of compact binaries
- High-Energy Neutrino Emission from Short Gamma-Ray Bursts: Prospects for Coincident Detection with Gravitational Waves
- Measuring the distance-redshift relation with the cross-correlation of gravitational wave standard sirens and galaxies
- Gravitational Waves: Sources, Detectors and Searches
- Exploring the sensitivity of gravitational wave detectors to neutron star physics
- Science-Driven Tunable Design of Cosmic Explorer Detectors
- Measuring the Hubble constant with neutron star black hole mergers
- The Gravitational-Wave Physics II: Progress
- Binary Love Relations
- The Science of the Einstein Telescope
- Parameter estimation for binary black holes with networks of third generation gravitational-wave detectors
- Beyond Concordance Cosmology with Magnification of Gravitational-Wave Standard Sirens
- Exploring tidal effects of coalescing binary neutron stars in numerical relativity
- The Emergence of Structure in the Binary Black Hole Mass Distribution
- Tidal effects in the gravitational-wave phase evolution of compact binary systems to next-to-next-to-leading post-Newtonian order
- The effect of matter structure on the gravitational waveform
- Cosmological inference using only gravitational wave observations of binary neutron stars
- Testing Brans-Dicke gravity using the Einstein telescope
- Exploring Features in the Binary Black Hole Population
- Equation-of-state insensitive relations after GW170817
- Neutron Star Mergers and How to Study Them
- Cosmology and modified gravitational wave propagation from binary black hole population models
- Host redshifts from gravitational-wave observations of binary neutron star mergers
- Approximate Universal Relations among Tidal Parameters for Neutron Star Binaries
- Measuring the Hubble constant: Gravitational wave observations meet galaxy clustering
- Unbiased Hubble constant estimation from binary neutron star mergers
- Constraining the Hubble constant to a precision of about 1% using multi-band dark standard siren detections
- Towards the Design of Gravitational-Wave Detectors for Probing Neutron-Star Physics
- Anisotropies of gravitational-wave standard sirens as a new cosmological probe without redshift information
- Constraints on the time variation of the gravitational constant using gravitational-wave observations of binary neutron stars
- Constraining the equation of state of nuclear matter with gravitational wave observations: Tidal deformability and tidal disruption
- Constraining the cosmological parameters using gravitational wave observations of massive black hole binaries and statistical redshift information
- Hunting for the host galaxy groups of binary black holes and the application in constraining Hubble constant
- The redshift dependence of black hole mass distribution: Is it reliable for standard sirens cosmology?
- Cosmology with Standard Sirens at Cosmic Noon
- Hearing gravity from the cosmos: GWTC-2 probes general relativity at cosmological scales
- Lensed or not lensed: Determining lensing magnifications for binary neutron star mergers from a single detection
- Measuring the Hubble constant with black sirens
- Simultaneous Inference of Neutron Star Equation of State and the Hubble Constant with a Population of Merging Neutron Stars
- Prospects for measuring the Hubble constant and dark energy using gravitational-wave dark sirens with neutron star tidal deformation
- Measuring the delay time distribution of binary neutron stars. II. Using the redshift distribution from third-generation gravitational wave detectors network
- Measurement of Hubble constant with stellar-mass binary black holes
- Cosmology with Gravitational Wave/Fast Radio Burst Associations
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Astrophysical science metrics for next-generation gravitational-wave detectors
- Prospects for probing the interaction between dark energy and dark matter using gravitational-wave dark sirens with neutron star tidal deformation
- Second Einstein Telescope Mock Data and Science Challenge: Low Frequency Binary Neutron Star Data Analysis
- Localization of binary mergers with gravitational-wave detectors of second and third generation
- 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
- Impact of the tidal p-g instability on the gravitational wave signal from coalescing binary neutron stars
- The cosmic distance duality relation with strong lensing and gravitational waves: an opacity-free test
- Comprehensive analysis of the tidal effect in gravitational waves and implication for cosmology
- Cosmography with next-generation gravitational wave detectors
- Cosmology and Astrophysics with Standard Sirens and Galaxy Catalogs in View of Future Gravitational Wave Observations
- Exploiting the Einstein Telescope to solve the Hubble tension
- Systematic Biases in Estimating the Properties of Black Holes Due to Inaccurate Gravitational-Wave Models
- Coalescence of Strange-Quark Planets with Strange Stars: a New Kind of Sources for Gravitational Wave Bursts
- I-Love-Q Relations for Neutron Stars in dynamical Chern Simons Gravity
- Avoiding selection bias in gravitational wave astronomy
- Cosmology with the Einstein Telescope: No Slip Gravity Model and Redshift Specifications
- Mapping the Universe Expansion: Enabling percent-level measurements of the Hubble Constant with a single binary neutron-star merger detection
- Learning how to surf: Reconstructing the propagation and origin of gravitational waves with Gaussian Processes
- Beyond the linear tide: impact of the non-linear tidal response of neutron stars on gravitational waveforms from binary inspirals
- Inference of the neutron star equation of state from cosmological distances
- Massive Black Hole Science with eLISA
- Constraints on cosmic curvature with lensing time delays and gravitational waves
- Detectability of Gravitational Waves from High-Redshift Binaries
- Cosmography with Standard Sirens from the Einstein Telescope
- Analyzing clustering of astrophysical gravitational-wave sources: Luminosity-distance space distortions
- Gravitational-wave constraints on the cosmic opacity at : forecast from space gravitational-wave antenna DECIGO
- Gravitational-wave dark siren cosmology systematics from galaxy weighting
- Astrophysics, cosmology, and fundamental physics with compact binary coalescence and the Einstein Telescope
- Using machine learning to parametrize postmerger signals from binary neutron stars
- Constraining neutron star properties with a new equation of state insensitive approach
- The observed number counts in luminosity distance space
- Unbiased likelihood-free inference of the Hubble constant from light standard sirens
- Discrepancy in tidal deformability of GW170817 between the Advanced LIGO twin detectors
- Multiple measurements of gravitational waves acting as standard probes: model-independent constraints on the cosmic curvature with DECIGO
- The potential role of binary neutron star merger afterglows in multimessenger cosmology
- Prospects of the local Hubble parameter measurement using gravitational waves from double neutron stars
- The relation between cosmological redshift and scale factor for photons
- Constraining CDM cosmological parameters with Einstein Telescope mock data
- Parameter estimation of eccentric gravitational waves with a decihertz observatory and its cosmological implications
- The lure of sirens: joint distance and velocity measurements with third generation detectors
- Measuring the Hubble constant with coalescences of binary neutron star and neutron star-black hole: bright sirens \& dark sirens
- Lensing rates of gravitational wave signals displaying beat patterns detectable by DECIGO and B-DECIGO
- DECi-hertz Interferometer Gravitational-wave Observatory: Forecast constraints on the cosmic curvature with LSST strong lenses
- Breaking bad degeneracies with Love relations: Improving gravitational-wave measurements through universal relations
- Astrophysical calibration of gravitational-wave detectors
- Constraining properties of neutron star merger outflows with radio observations
- Calibrating the cosmic distance ladder using gravitational-wave observations
- The Gravitational Wave Emission of Double White Dwarf Coalescences
- How would GW150914 look with future GW detector networks?
- Boosting the sensitivity of high frequency gravitational wave detectors by PT-symmetry
- Probing modified gravitational-wave propagation through tidal measurements of binary neutron star mergers
- Reconstructing the Hubble parameter with future Gravitational Wave missions using Machine Learning
- Bayesian framework to infer the Hubble constant from the cross-correlation of individual gravitational wave events with galaxies
- Direct Measurement of the Positive Acceleration of the Universe and Testing Inhomogeneous Models under Gravitational Wave Cosmology
- Strong-lensing cosmography using third-generation gravitational-wave detectors
- Impact of unmodeled eccentricity on the tidal deformability measurement and implications for gravitational wave physics inference
- Constraining cosmological parameters from strong lensing with DECIGO and B-DECIGO sources
- Gravitational wave astrophysics, data analysis and multimessenger astronomy
- Detecting Baryon Acoustic Oscillations with third generation gravitational wave observatories
- Determining the Hubble Constant with AGN-assisted Black Hole Mergers
- A model-independent tripartite test of cosmic distance relations
- Probing Interacting Dark Sector with the next generation of gravitational-wave detectors
- Fundamental Physics and Cosmology with TianQin
- Luminosity distance uncertainties from gravitational wave detections by third generation observatories
- Impact of calibration uncertainties on Hubble constant measurements from gravitational-wave sources
- Cosmological model selection from standard siren detections by third-generation gravitational wave obervatories
- Unveiling the Universe with Emerging Cosmological Probes
- Measuring the Hubble Constant with Double Gravitational Wave Sources in Pulsar Timing
- Low latency search for Gravitational waves from BH-NS binaries in coincidence with Short Gamma Ray Bursts
- Estimating Hubble Constant with Gravitational Observations: A Concise Review
- Next-generation global gravitational-wave detector network: Impact of detector orientation on compact binary coalescence and stochastic gravitational-wave background searches
- Corrections to the gravitational wave phasing
- A Hubble constant estimation with dark standard sirens and galaxy cluster catalogues
- Probing dynamical spacetimes with gravitational waves
- The constraint ability of Hubble parameter by gravitational wave standard sirens on cosmological parameters
- Cosmology with Binary Neutron Stars: Does Mass-Redshift Correlation Matter?
- Probing Fundamental Physics with Gravitational Waves
- Joint estimation of the cosmological model and the mass and redshift distributions of the binary black hole population with the Einstein Telescope
- Joint Inference of Population, Cosmology, and Neutron Star Equation of State from Gravitational Waves of Dark Binary Neutron Stars
- Parameter estimation of eccentric massive black hole binaries with LISA and its cosmological implications
- Mapping the cosmic expansion history from LIGO-Virgo-KAGRA in synergy with DESI and SPHEREx
- Massive black hole binaries in LISA: constraining cosmological parameters at high redshifts
- Influence of cosmic expansion on gravitational waveforms
- Listening Across the Cosmic Time: Standard Sirens from Ground- and Space-Based Missions in the Next Decade
- Uncertainty and bias of cosmology and astrophysical population model from statistical dark sirens
- Measuring Hubble Constant with Dark Neutron Star-Black Hole Mergers
- Matters of Gravity, The Newsletter of the Division of Gravitational Physics of the American Physical Society, Volume 48, December 2016
- Probing modified gravitational wave propagation with strongly lensed coalescing binaries
- Cosmology with Love: Measuring the Hubble constant using neutron star universal relations
- Gravitational-wave standard sirens and application in cosmology
- Golden and Silver Dark Sirens for precise H0 measurement with HETDEX
- A Study of Systematics on the Cosmological Inference of the Hubble Constant from Gravitational Wave Standard Sirens
- Coincidence searches of gravitational waves and short gamma-ray bursts
- Constraining the lensing dispersion from the angular clustering of binary black hole mergers
- Challenges of Relativistic Astrophysics