Constraints on Interacting Early Dark Energy from a Modified Temperature-Redshift Relation and CMB Acoustic Scales
Y Bisabr

TL;DR
This paper investigates how a coupled early dark energy scalar field modifies the temperature-redshift relation and CMB acoustic scales, providing constraints on such interactions to address the Hubble tension.
Contribution
It introduces a model of early dark energy coupled to radiation, deriving the modified temperature evolution and constraining the coupling using Planck data.
Findings
Coupling affects the background evolution without new dynamical degrees of freedom.
Modified temperature-redshift relation is tightly constrained by CMB acoustic scale.
Interaction shifts the sound horizon at recombination, impacting cosmological measurements.
Abstract
The Hubble tension, reflecting a persistent discrepancy between early- and late-time determinations of the Hubble constant, continues to motivate extensions of the standard cosmological model The Hubble tension motivates extensions of the standard cosmological model that modify pre-recombination physics. In this work we study an early dark energy scalar field coupled to radiation prior to recombination. The interaction leads to energy exchange between the two components and modifies the standard cosmic microwave background temperature redshift relation. We derive the modified temperature evolution from the background equations and interpret it in terms of effective photon non-conservation. We also study linear scalar perturbations in the tight-coupling regime relevant for cosmic microwave background acoustic physics. We show that the interaction affects the background evolution…
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Taxonomy
TopicsCosmology and Gravitation Theories · Galaxies: Formation, Evolution, Phenomena · Noncommutative and Quantum Gravity Theories
