Synergy between CSST and third-generation gravitational-wave detectors: Inferring cosmological parameters using cross-correlation of dark sirens and galaxies
arXiv:2510.21521 · doi:10.1103/qtfb-6h49
Abstract
Gravitational-wave (GW) events are generally believed to originate in galaxies and can thus serve, like galaxies, as tracers of the universe's large-scale structure. In GW observations, waveform analysis provides direct measurements of luminosity distances; however, without relying on a specific cosmological model, the redshifts of GW sources cannot be determined due to the mass-redshift degeneracy. By cross-correlating GW events with galaxies, one can establish a correspondence between luminosity distance and redshift shells, enabling cosmological inference. In this work, we explore the scientific potential of cross-correlating GW sources detected by third-generation (3G) ground-based GW detectors with the photometric redshift survey of the China Space Station Survey Telescope (CSST). We find that the constraint precisions of the Hubble constant and the matter density parameter can reach and , respectively. Additionally, we have also constrained the precision of the GW clustering bias parameter. These results highlight the significant potential of the synergy between CSST and 3G ground-based GW detectors in constraining cosmological models and probing GW source formation channels using cross-correlation of dark sirens and galaxies.
16 pages, 7 figures; accepted for publication in Physical Review D
References in corpus (97)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Detection of the Baryon Acoustic Peak in the Large-Scale Correlation Function of SDSS Luminous Red Galaxies
- Cosmic Star Formation History
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- The 2dF Galaxy Redshift Survey: Power-spectrum analysis of the final dataset and cosmological implications
- P-V criticality of charged AdS black holes
- A gravitational-wave standard siren measurement of the Hubble constant
- Euclid. I. Overview of the Euclid mission
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- The linear power spectrum of observed source number counts
- What galaxy surveys really measure
- A 2 per cent Hubble constant measurement from standard sirens within 5 years
- New Perspective on Galaxy Clustering as a Cosmological Probe: General Relativistic Effects
- Cosmology from the Chinese Space Station Optical Survey (CSS-OS)
- Core Cosmology Library: Precision Cosmological Predictions for LSST
- Measuring the binary black hole mass spectrum with an astrophysically motivated parameterization
- Constraints on the cosmic expansion history from GWTC-3
- Determination of Dark Energy by the Einstein Telescope: Comparing with CMB, BAO and SNIa Observations
- The Baryonic Acoustic Feature and Large-Scale Clustering in the SDSS LRG Sample
- Cosmological Inference using Gravitational Wave Standard Sirens: A Mock Data Challenge
- Estimating cosmological parameters by the simulated data of gravitational waves from the Einstein Telescope
- Probing the theory of gravity with gravitational lensing of gravitational waves and galaxy surveys
- Ruppeiner Geometry, Phase Transitions, and the Microstructure of Charged AdS Black Holes
- The 3D Power Spectrum from Angular Clustering of Galaxies in Early SDSS Data
- Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology
- Redshift Space Distortions of the Correlation Function in Wide Angle Galaxy Surveys
- Constraints on Interacting Dark Energy Models from the DESI Baryon Acoustic Oscillation and DES Supernovae Data
- Measuring the distance-redshift relation with the cross-correlation of gravitational wave standard sirens and galaxies
- GW250114: testing Hawking's area law and the Kerr nature of black holes
- Impacts of gravitational-wave standard siren observation of the Einstein Telescope on weighing neutrinos in cosmology
- Anisotropies in the astrophysical gravitational-wave background: Predictions for the detection of compact binaries by LIGO and Virgo
- Probing cosmic anisotropy with gravitational waves as standard sirens
- Projection effects on the observed angular spectrum of the astrophysical stochastic gravitational wave background
- Forecast for cosmological parameter estimation with gravitational-wave standard sirens from the LISA-Taiji network
- Cosmological Parameter Estimation with Large Scale Structure Observations
- Forecast for cosmological parameter estimation with gravitational-wave standard siren observation from the Cosmic Explorer
- Gravitational wave standard sirens and cosmological parameter measurement
- Cosmological parameter estimation with future gravitational wave standard siren observation from the Einstein Telescope
- GWFish: A simulation software to evaluate parameter-estimation capabilities of gravitational-wave detector networks
- Anisotropies in the astrophysical gravitational-wave background: The impact of black hole distributions
- Measuring the Hubble constant: Gravitational wave observations meet galaxy clustering
- Incompleteness Matters Not: Inference of from BBH-galaxy cross-correlations
- Improving cosmological parameter estimation with the future gravitational-wave standard siren observation from the Einstein Telescope
- Constraining the Hubble constant to a precision of about 1% using multi-band dark standard siren detections
- Introduction to the Chinese Space Station Survey Telescope (CSST)
- How can gravitational-wave standard sirens and 21 cm intensity mapping jointly provide a precise late-universe cosmological probe?
- Shot noise in the astrophysical gravitational-wave background
- 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
- A preliminary forecast for cosmological parameter estimation with gravitational-wave standard sirens from TianQin
- Probing the sign-changeable interaction between dark energy and dark matter with DESI baryon acoustic oscillations and DES supernovae data
- Hunting for the host galaxy groups of binary black holes and the application in constraining Hubble constant
- Synergy between CSST galaxy survey and gravitational-wave observation: Inferring the Hubble constant from dark standard sirens
- Exploring galaxies-gravitational waves cross-correlations as an astrophysical probe
- Beware of commonly used approximations I: errors in forecasts
- 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
- Using a multi-messenger and multi-wavelength observational strategy to probe the nature of dark energy through direct measurements of cosmic expansion history
- A path to precision cosmology: synergy between four promising late-universe cosmological probes
- Gravitational Wave mergers as tracers of Large Scale Structures
- Beware of commonly used approximations II: estimating systematic biases in the best-fit parameters
- Prospects for probing the interaction between dark energy and dark matter using gravitational-wave dark sirens with neutron star tidal deformation
- Dipolar modulation in the size of galaxies: The effect of Doppler magnification
- Impacts of dark energy on weighing neutrinos after DESI BAO
- Joint constraints on cosmological parameters using future multi-band gravitational wave standard siren observations
- Signatures of primordial black holes in gravitational wave clustering
- Forecast of Neutrino Cosmology from the CSST Photometric Galaxy Clustering and Cosmic Shear Surveys
- Developing a unified pipeline for large-scale structure data analysis with angular power spectra -- I. The importance of redshift-space distortions for galaxy number counts
- A comprehensive forecast for cosmological parameter estimation using joint observations of gravitational waves and short -ray bursts
- Exploring non-cold dark matter in a scenario of dynamical dark energy with DESI DR2 data
- A search for sterile neutrinos in interacting dark energy models using DESI baryon acoustic oscillations and DES supernovae data
- Probing the large scale structure using gravitational-wave observations of binary black holes
- The observed number counts in luminosity distance space
- Measuring cosmic curvature with non-CMB observations
- Model-independent cosmological inference after the DESI DR2 data with improved inverse distance ladder
- Measuring the Hubble constant with coalescences of binary neutron star and neutron star-black hole: bright sirens \& dark sirens
- Constraining extended cosmologies with GWLSS cross-correlations
- Model-independent within FLRW: Joint constraints from GWTC-3 standard sirens and strong lensing time delays
- 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
- Improving the Cosmological Constraints by Inferring the Formation Channel of Extreme-mass-ratio Inspirals
- Gravitational wave standard sirens: A brief review of cosmological parameter estimation
- Measuring neutrino masses with joint JWST and DESI DR2 data
- Bayesian framework to infer the Hubble constant from the cross-correlation of individual gravitational wave events with galaxies
- Prospects for weighing neutrinos in interacting dark energy models using joint observations of gravitational waves and -ray bursts
- Relativistic distortions in galaxy density-ellipticity correlations: gravitational redshift and peculiar velocity effects
- Thermodynamic supercriticality and complex phase diagram for the AdS black hole
- Revisiting the phenomenologically emergent dark energy model: is non-zero equation of state of dark matter favored by DESI DR2?
- Testing the cosmic distance duality relation with baryon acoustic oscillations and supernovae data
- Precessing Binary Black Holes as Better Dark Sirens
- Flat-sky Angular Power Spectra Revisited
- Revisiting holographic dark energy from the perspective of multi-messenger gravitational wave astronomy: future joint observations with short gamma-ray bursts
- Prospects for searching for sterile neutrinos with gravitational wave and -ray burst joint observations
- CSST Cosmological Emulator III: Hybrid Lagrangian Bias Expansion Emulation of Galaxy Clustering
- Ultra-low-frequency gravitational waves from individual supermassive black hole binaries as standard sirens
- Multi-messenger standard-siren cosmology for third-generation gravitational-wave detectors: forecasts considering observations of gamma-ray bursts and kilonovae
- Prospects for searching for sterile neutrinos in dynamical dark energy cosmologies using joint observations of gravitational waves and -ray bursts
- The chromatic Point Spread Function of weak lensing measurement in Chinese Space Station survey Telescope