Constraining the lensing dispersion from the angular clustering of binary black hole mergers
arXiv:2506.10469 · doi:10.1103/tbsp-cl5x
Abstract
Gravitational waves from inspiraling compact binaries provide direct measurements of luminosity distances and serve as a powerful probe of the high-redshift Universe. In addition to their role as standard sirens, they offer an opportunity to constrain small-scale density fluctuations through the dispersion in the distance-redshift relation induced by gravitational lensing. We propose a method to constrain this lensing dispersion without requiring the redshift information by analyzing the angular clustering of gravitational wave sources. Our formalism incorporating second-order lensing effects in the luminosity distance shows that the amplitude of the auto-correlation angular clustering decreases with increasing lensing dispersion. While we show that the auto-correlation signal is detected with sufficient signal-to-noise ratios in future gravitational wave experiments, there exists a strong degeneracy between the lensing dispersion and the linear bias of gravitational wave sources. We demonstrate that this degeneracy is partially broken by a joint analysis of the auto-correlation of gravitational wave sources and the cross-correlation with galaxies whose redshifts are known. This approach enhances the use of gravitational waves as a cosmological probe at high redshifts.
18pages, 10 figures
References in corpus (11)
- Cosmic Star Formation History
- 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
- Precision of Hubble constant derived using black hole binary absolute distances and statistical redshift information
- Cosmology with the lights off: Standard sirens in the Einstein Telescope era
- Probing dark energy with cluster counts and cosmic shear power spectra: including the full covariance
- Beyond Concordance Cosmology with Magnification of Gravitational-Wave Standard Sirens
- Binary black hole mergers: formation and populations
- Mass and star formation rate of the host galaxies of compact binary mergers across cosmic time
- A robust cosmic standard ruler from the cross-correlations of galaxies and dark sirens
- Gravitational waves and galaxies cross-correlations: a forecast on GW biases for future detectors
- The Gravitational Wave Bias Parameter from Angular Power Spectra: Bridging Between Galaxies and Binary Black Holes