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Cross-correlating galaxy catalogs and gravitational waves: a tomographic approach

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arxiv 2002.02466 v2 pith:C3TNGXIF submitted 2020-02-06 astro-ph.CO

Cross-correlating galaxy catalogs and gravitational waves: a tomographic approach

classification astro-ph.CO
keywords coalescingblackcatalogscross-correlationgalaxyadvancedallowapproach
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Unveiling the origin of the coalescing binaries detected via gravitational waves (GW) is challenging, notably if no multi-wavelength counterpart is detected. One important diagnostic tool is the coalescing binary distribution with respect to the large scale structures (LSS) of the universe, which we quantify via the cross-correlation of galaxy catalogs with GW ones. By using both existing and forthcoming galaxy catalogs and using realistic Monte Carlo simulations of GW events, we find that the cross-correlation signal should be marginally detectable in a 10-year data taking of advanced LIGO-Virgo detectors at design sensitivity, at least for binary neutron star mergers. The expected addition of KAGRA and LIGO-India to the GW detector network would allow for a firmer detection of this signal and, in combination with future cosmological surveys, would also permit the detection of cross-correlation for coalescing black holes. Such a measurement may unveil, for instance, a primordial origin of coalescing black holes. To attain this goal, we find that it is crucial to adopt a tomographic approach and to reach a sufficiently accurate localization of GW events. The depth of forthcoming surveys will be fully exploited by third generation GW detectors such as the Einstein Telescope or the Cosmic Explorer, which will allow one to perform precision studies of the coalescing black hole LSS distribution and attain rather advanced model discrimination capabilities.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Constraining the lensing dispersion from the angular clustering of binary black hole mergers

    astro-ph.CO 2025-06 unverdicted novelty 6.0

    Angular auto-correlation of gravitational wave sources decreases with lensing dispersion, and joint cross-correlation with galaxies partially breaks the degeneracy with source bias.

  2. The impact of the formation channel on gravitational-wave-galaxy cross-correlations

    astro-ph.CO 2026-02 conditional novelty 5.0

    GW-galaxy cross-correlation forecasts depend strongly on the assumed binary time-delay distribution but barely on the mass-transfer prescription, with detections predicted only for long delays against shallow surveys.