DOI: 10.1093/mnras/stag1380 ISSN: 0035-8711

Implications for dark energy of cosmic transparency in light of DESI data

S Dhawan, E Mörtsell

Abstract

The distance duality relation (DDR) between luminosity and angular diameter distances holds if gravity is described by a metric theory and the universe is transparent. Recent cosmological inferences have suggested that dark energy may evolve in time. We test how DDR impacts dark energy inference. We find no deviation from the DDR, independent of the SN Ia compilation used, or the assumed dark energy model. This corresponds to a maximum deviation in the SN Ia luminosity of Δm ∼ 0.05 mag at the highest redshift. Allowing for deviations in the DDR increases the errors in the dark energy equation of state parameters (EoS) by 30-50%. For the Pantheon+ compilation the constraints on dark energy are within 2σ of ΛCDM when applying a more realistic minimum redshift cut zmin > 0.023. We constrain photon-axion mixing and the presence of (gray) intergalactic (IG) dust to Ωdust < 2 × 10−4 at 95% C.L. and on photon-axion interaction length scale gaγ < 10−12 GeV−1. With the local Cepheid calibration of the SNe Ia absolute luminosity, a significant deviation from the DDR relation (for which ε = 0) is preferred. The best fit parameter value ε = −0.091 ± 0.024 requires the SNe Ia to be brighter than the case with DDR valid, hence, neither of the physical scenarios which dim the SNe can explain the high H0. We expect improvements by a factor of ∼2 with future data.

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