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Constraining cosmology with the Gaia-unWISE Quasar Catalog and CMB lensing: structure growth

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arxiv 2306.17748 v2 pith:T2G5HT6F submitted 2023-06-30 astro-ph.CO astro-ph.GA

Constraining cosmology with the Gaia-unWISE Quasar Catalog and CMB lensing: structure growth

classification astro-ph.CO astro-ph.GA
keywords sigmaamplitudeconstraintscosmicmatterstructurecatalogclustering
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the angular clustering of Quaia, a Gaia- and unWISE-based catalog of over a million quasars with an exceptionally well-defined selection function. With it, we derive cosmology constraints from the amplitude and growth of structure across cosmic time. We divide the sample into two redshift bins, centered at $z=1.0$ and $z=2.1$, and measure both overdensity auto-correlations and cross-correlations with maps of the Cosmic Microwave Background convergence measured by Planck. From these data, and including a prior from measurements of the baryon acoustic oscillations scale, we place constraints on the amplitude of the matter power spectrum $\sigma_8=0.766\pm 0.034$, and on the matter density parameter $\Omega_m=0.343^{+0.017}_{-0.019}$. These measurements are in reasonable agreement with \planck at the $\sim$ 1.4$\sigma$ level, and are found to be robust with respect to observational and theoretical uncertainties. We find that our slightly lower value of $\sigma_8$ is driven by the higher-redshift sample, which favours a low amplitude of matter fluctuations. We present plausible arguments showing that this could be driven by contamination of the CMB lensing map by high-redshift extragalactic foregrounds, which should also affect other cross-correlations with tracers of large-scale structure beyond $z\sim1.5$. Our constraints are competitive with those from state-of-the-art 3$\times$2-point analyses, but arise from a range of scales and redshifts that is highly complementary to those covered by cosmic shear data and most galaxy clustering samples. This, coupled with the unprecedented combination of volume and redshift precision achieved by Quaia allows us to break the usual degeneracy between $\Omega_m$ and $\sigma_8$.

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Cited by 3 Pith papers

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  1. Prospects for multi-messenger discovery of the gravitational-wave background anisotropies via cross-correlation with galaxies

    astro-ph.CO 2026-05 unverdicted novelty 6.0

    New simulations show that cross-correlating gravitational wave background anisotropies with galaxy distributions can enable discovery at angular scales of 4-6 degrees with next-generation observatories.

  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.

  3. Constraints on primordial non-Gaussianity from Quaia

    astro-ph.CO 2025-04 unverdicted novelty 5.0

    Reports f_NL = -20.5^{+19.0}_{-18.1} (68% CL) from combined Quaia quasar auto-correlation and CMB lensing cross-correlation assuming p_phi=1, or -28.7^{+26.1}_{-24.6} for p_phi=1.6.