Determination of Dark Energy by the Einstein Telescope: Comparing with CMB, BAO and SNIa Observations
arXiv:1009.0206 · doi:10.1103/PhysRevD.83.023005
Abstract
A design study is currently in progress for a third generation gravitational-wave (GW) detector called Einstein Telescope (ET). An important kind of source for ET will be the inspiral and merger of binary neutron stars (BNS) up to . If BNS mergers are the progenitors of short-hard -ray bursts, then some fraction of them will be seen both electromagnetically and through GW, so that the luminosity distance and the redshift of the source can be determined separately. An important property of these `standard sirens' is that they are \emph{self-calibrating}: the luminosity distance can be inferred directly from the GW signal, with no need for a cosmic distance ladder. Thus, standard sirens will provide a powerful independent check of the CDM model. In previous work, estimates were made of how well ET would be able to measure a subset of the cosmological parameters (such as the dark energy parameter ) it will have access to, assuming that the others had been determined to great accuracy by alternative means. Here we perform a more careful analysis by explicitly using the potential Planck CMB data as prior information for these other parameters. We find that ET will be able to constrain and with accuracies and , respectively. These results are compared with projected accuracies for the JDEM Baryon Acoustic Oscillations project and the SNAP Type Ia supernovae observations.
28 pages, 5 figures, 5 tables; Published Version
References in corpus (13)
- Dynamics of dark energy
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- Measuring the Baryon Acoustic Oscillation scale using the SDSS and 2dFGRS
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- Report of the Dark Energy Task Force
- Cosmology with Weak Lensing Surveys
- Precision of Hubble constant derived using black hole binary absolute distances and statistical redshift information
- Pre-Merger Localization of Gravitational-Wave Standard Sirens With LISA: Triggered Search for an Electromagnetic Counterpart
- Bounding the mass of the graviton with gravitational waves: Effect of higher harmonics in gravitational waveform templates
- LISA observations of supermassive black holes: parameter estimation using full post-Newtonian inspiral waveforms
- Stable indications of relic gravitational waves in Wilkinson Microwave Anisotropy Probe data and forecasts for the Planck mission
Cited by in corpus (93)
- Science with the Einstein Telescope: a comparison of different designs
- Cosmology with the Laser Interferometer Space Antenna
- Cosmology with the lights off: Standard sirens in the Einstein Telescope era
- Estimating cosmological parameters by the simulated data of gravitational waves from the Einstein Telescope
- Constraints on Interacting Dark Energy Models from the DESI Baryon Acoustic Oscillation and DES Supernovae Data
- The Gravitational-Wave Physics II: Progress
- Beyond Concordance Cosmology with Magnification of Gravitational-Wave Standard Sirens
- Gravitational waves from f-modes excited by the inspiral of highly eccentric neutron star binaries
- A Program for Multi-Messenger Standard Siren Cosmology in the Era of LIGO A+, Rubin Observatory, and Beyond
- Biases in parameter estimation from overlapping gravitational-wave signals in the third generation detector era
- Listening to the Universe with Next Generation Ground-Based Gravitational-Wave Detectors
- Constraining the Hubble constant to a precision of about 1% using multi-band dark standard siren detections
- How can gravitational-wave standard sirens and 21 cm intensity mapping jointly provide a precise late-universe cosmological probe?
- Constraining the cosmological parameters using gravitational wave observations of massive black hole binaries and statistical redshift information
- The Taiji-TianQin-LISA network: Precisely measuring the Hubble constant using both bright and dark sirens
- Synergy between CSST galaxy survey and gravitational-wave observation: Inferring the Hubble constant from dark standard sirens
- Multi-messenger Detection Rates and distributions of Binary Neutron Star Mergers and Their Cosmological Implications
- Constraining interacting dark energy with CMB and BAO future surveys
- Cosmology with Standard Sirens at Cosmic Noon
- Testing the Etherington's distance duality relation at higher redshifts: the combination of radio quasars and gravitational waves
- Gravitational-Wave Detector Networks: Standard Sirens on Cosmology and Modified Gravity Theory
- Prospects for measuring the Hubble constant and dark energy using gravitational-wave dark sirens with neutron star tidal deformation
- Impacts of gravitational-wave standard siren observations from Einstein Telescope and Cosmic Explorer on weighing neutrinos in interacting dark energy models
- A path to precision cosmology: synergy between four promising late-universe cosmological probes
- Prospects for probing the interaction between dark energy and dark matter using gravitational-wave dark sirens with neutron star tidal deformation
- Cosmology with fast radio bursts in the era of SKA
- Testing Cosmic Distance-Duality Relation from Future Gravitational Wave Standard Sirens
- A new way to explore cosmological tensions using gravitational waves and strong gravitational lensing
- Gravitational wave propagation in models: New parametrizations and observational constraints
- Comprehensive analysis of the tidal effect in gravitational waves and implication for cosmology
- Dancing in the dark: detecting a population of distant primordial black holes
- Joint constraints on cosmological parameters using future multi-band gravitational wave standard siren observations
- Eccentricity of Long Inspiraling Compact Binaries Sheds Light on Dark Sirens
- Prospects for constraining interacting dark energy models from gravitational wave and gamma ray burst joint observation
- A forecast of using fast radio burst observations to constrain holographic dark energy
- Probing the cosmic opacity from Future Gravitational Wave Standard Sirens
- An accurate method to determine the systematics due to the peculiar velocities of galaxies in measuring the Hubble constant from gravitational wave standard sirens
- Direct measurement of the distribution of dark matter with strongly lensed gravitational waves
- Measuring tidal effects with the Einstein Telescope: A design study
- Measuring the viscosity of dark matter with strongly lensed gravitational waves
- Exploring the "--" relation of HII galaxies and giant extragalactic HII regions acting as standard candles
- Testing f(R) gravity with the simulated data of gravitational waves from the Einstein Telescope
- Cosmological model-independent measurement of cosmic curvature using distance sum rule with the help of gravitational waves
- Cosmography with Standard Sirens from the Einstein Telescope
- Constraints on cosmic curvature with lensing time delays and gravitational waves
- Future prospects on testing extensions to CDM through the weak lensing of gravitational waves
- Model-independent constraints on cosmic curvature: implication from the future gravitational wave observation DECIGO
- Null test for cosmic curvature using Gaussian process
- Calibration of gamma-ray bursts luminosity correlations using gravitational waves as standard sirens
- On using inspiralling supermassive binary black holes in the PTA frequency band as standard sirens to constrain dark energy
- Unbiased Cosmic Opacity Constraints from Standard Sirens and Candles
- Implications of the lens redshift distribution of strong lensing systems: cosmological parameters and the global properties of early-type galaxies
- Parameter estimation of eccentric gravitational waves with a decihertz observatory and its cosmological implications
- Constraining CDM cosmological parameters with Einstein Telescope mock data
- 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
- Forecasts on interacting dark energy with standard sirens
- Model-independent within FLRW: Joint constraints from GWTC-3 standard sirens and strong lensing time delays
- Testing gravity with gravitational wave friction and gravitational slip
- DECi-hertz Interferometer Gravitational-wave Observatory: Forecast constraints on the cosmic curvature with LSST strong lenses
- Standard sirens and dark sector with Gaussian process
- Space-borne atom interferometric gravitational wave detections. Part I. The forecast of bright sirens on cosmology
- Exploring bulk viscous unified scenarios with Gravitational Waves Standard Sirens
- Reconstructing the Hubble parameter with future Gravitational Wave missions using Machine Learning
- Rapid identification of time-frequency domain gravitational wave signals from binary black holes using deep learning
- Space-borne atom interferometric gravitational wave detections. Part II. Dark sirens and finding the one
- Distinguish the model from CDM model with Gravitational Wave observations
- Multimessenger Universe with Gravitational Waves from Binaries
- Luminosity distance uncertainties from gravitational wave detections by third generation observatories
- A model-independent tripartite test of cosmic distance relations
- Revisiting holographic dark energy from the perspective of multi-messenger gravitational wave astronomy: future joint observations with short gamma-ray bursts
- Effects of a Late Gravitational Transition on Gravitational Waves and Anticipated Constraints
- Combining strongly lensed and unlensed fast radio bursts: To be a more precise late-universe probe
- Investigating the dynamical models of cosmology with recent observations and upcoming gravitational-wave data
- Precessing Binary Black Holes as Better Dark Sirens
- On Dark Gravitational Wave Standard Sirens as Cosmological Inference and Forecasting the Constraint on Hubble Constant using Binary Black Holes Detected by Deci-hertz Observatory
- Measuring the speed of light with cosmological observations: current constraints and forecasts
- Using simulated Tianqin gravitational wave data and electromagnetic wave data to study the coincidence problem and Hubble tension problem
- Climbing out of the shadows: building the distance ladder with black hole images
- Cosmology and the Early Universe
- A New Window on Dynamical Dark Energy: Combining DESI-DR2 BAO with future Gravitational Wave Observations
- High precision measurement of cosmic curvature: from gravitational waves and cosmic chronometer
- Impact of weak lensing on bright standard siren analyses
- Gravitational Wave luminosity distance in viscous cosmological models
- Multi-messenger standard-siren cosmology for third-generation gravitational-wave detectors: forecasts considering observations of gamma-ray bursts and kilonovae
- Is Dark Energy Changing? Probing the Universe's Expansion with present and future astronomical probes
- Cosmological perturbations in the energy-momentum squared gravity theory: constraints from gravitational wave standard sirens and redshift space distortions
- Forecast cosmological constraints from the number counts of Gravitational Waves events
- Search for exotic gravitational wave signals beyond general relativity using deep learning
- Prospects for joint multiband detection of intermediate-mass black holes by LGWA and the Einstein Telescope
- Synergy between CSST and third-generation gravitational-wave detectors: Inferring cosmological parameters using cross-correlation of dark sirens and galaxies
- Direct test of the FLRW metric from strongly lensed gravitational wave observations
- Gravitational-wave standard sirens and application in cosmology