Testing Low-Redshift Cosmic Acceleration with Large-Scale Structure

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Abstract

We examine the cosmological implications of measurements of the void-galaxy cross-correlation at redshift z=0.57 combined with baryon acoustic oscillation (BAO) data at 0.1 10σ significance from these data alone, independent of the cosmic microwave background (CMB) and supernovae. Using a nucleosynthesis prior on ωbh2, we measure the Hubble constant to be H0=72.3±1.9 km s-1 Mpc-1 from BAO+voids at z<2, and H0=69.0±1.2 km s-1 Mpc-1 when adding Lyman-α BAO at z=2.34, both independent of the CMB. Adding voids to CMB, BAO, and supernova data greatly improves measurement of the dark energy equation of state, increasing the figure of merit by >40%, but remaining consistent with flat Λ cold dark matter.

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Nadathur, S., Percival, W. J., Beutler, F., & Winther, H. A. (2020). Testing Low-Redshift Cosmic Acceleration with Large-Scale Structure. Physical Review Letters, 124(22). https://doi.org/10.1103/PhysRevLett.124.221301

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