Thermo-Coupled Early Dark Energy
arXiv:2411.09747 · doi:10.1103/PhysRevD.111.063551
Abstract
Early dark energy solutions to the Hubble tension introduce an additional scalar field which is frozen at early times but becomes dynamical around matter-radiation equality. In order to alleviate the tension, the scalar's share of the total energy density must rapidly shrink from at the onset of matter domination to by recombination. This typically requires a steep potential that is imposed rather than emerging from a concrete particle physics model. Here, we point out an alternative possibility: a homogeneous scalar field coupled quadratically to a cosmological background of light thermal relics (such as the Standard Model neutrino) will acquire an effective potential which can reproduce the dynamics necessary to alleviate the tension. We identify the relevant parameter space for this "thermo-coupled" scenario and study its unique phenomenology at the background level, including the back-reaction on the neutrino mass. Follow-up numerical work is necessary to determine the constraints placed on the model by early-time measurements.
6 pages, 3 figures, journal version
References in corpus (32)
- The Cosmic Linear Anisotropy Solving System (CLASS) II: Approximation schemes
- A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team
- A 2.4% Determination of the Local Value of the Hubble Constant
- Axion Cosmology
- In the Realm of the Hubble tension a Review of Solutions
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Cosmological Implications from two Decades of Spectroscopic Surveys at the Apache Point observatory
- Dark Energy Survey Year 3 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing
- Tensions between the Early and the Late Universe
- The trouble with
- The Hubble Hunter's Guide
- The landscape of QCD axion models
- The Olympics: A fair ranking of proposed models
- Dark Energy from Mass Varying Neutrinos
- Early dark energy, the Hubble-parameter tension, and the string axiverse
- Cosmological implications of ultra-light axion-like fields
- To H0 or not to H0?
- Early dark energy from massive neutrinos -- a natural resolution of the Hubble tension
- Limits on Neutrino-Neutrino Scattering in the Early Universe
- Cosmology of Mass-Varying Neutrinos Driven by Quintessence: Theory and Observations
- Boltzmann hierarchy for interacting neutrinos I: formalism
- Neutrino-Assisted Early Dark Energy: Theory and Cosmology
- Ultralight Scalar Decay and the Hubble Tension
- The Phenomenology of Quadratically Coupled Ultra Light Dark Matter
- Primordial Neutrinos, Cosmological Perturbations in Interacting Dark-Energy Model: CMB and LSS
- A Dark Matter Trigger for Early Dark Energy Coincidence
- Constraints on Ultralight Scalar Dark Matter with Quadratic Couplings
- Global view of neutrino interactions in cosmology: The freestreaming window as seen by Planck
- Neutrino bound states and bound systems
- Model independent constraints on mass-varying neutrino scenarios
- Wake forces in a background of quadratically coupled mediators
- Background-Induced Forces from Dark Relics
- Relaxing cosmological constraints on current neutrino masses