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Measurement of the power spectrum turnover scale from the cross-correlation between CMB lensing and Quaia

Published 31 Oct 2024 in astro-ph.CO | (2410.24134v3)

Abstract: We use the projected clustering of quasars in the Gaia-unWISE quasar catalog, Quaia, and its cross-correlation with CMB lensing data from Planck, to measure the large-scale turnover of the matter power spectrum, associated with the size of the horizon at the epoch of matter-radiation equality. The turnover is detected with a significance of between $2.3$ and 3.1σ3.1\sigma, depending on the method used to quantify it. From this measurement, the equality scale is determined at the ∼20%\sim20\% level. Using the turnover scale as a standard ruler alone (suppressing information from the large-scale curvature of the power spectrum), in combination with supernova data through an inverse distance ladder approach, we measure the current expansion rate to be H0=62.7±17.2 km s<sup>−1 </sup>Mpc<sup>−1H_0=62.7\pm17.2\,{\rm km}\,{\rm s}<sup>{-1}\,{\rm</sup> Mpc}<sup>{-1}. The addition of information coming from the power spectrum curvature approximately halves the standard ruler uncertainty. Our measurement in combination with calibrated supernovae from Pantheon++ and SH0ES constrains the CMB temperature to be TCMB=3.10<sup>+0.48−0.36 </sup>KT_{\rm CMB}=3.10<sup>{+0.48}_{-0.36}\,{\rm</sup> K}, independently of CMB data. Alternatively, assuming the value of TCMBT_{\rm CMB} from COBE-FIRAS, we can constrain the effective number of relativistic species in the early Universe to be Neff=3.0<sup>+5.8−2.9N_{\rm eff}=3.0<sup>{+5.8}_{-2.9}.

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