Published September 25, 2024 | Version v1
Journal article Open

Cosmology of dark energy radiation

  • 1. California Institute of Technology
  • 2. University of Chicago
  • 3. Stony Brook University
  • 4. Università degli Studi di Ferrara

Description

In this work, we quantify the cosmological signatures of dark energy radiation—a novel description of dark energy, which proposes that the dynamical component of dark energy is comprised of a thermal bath of relativistic particles sourced by thermal friction from a slowly rolling scalar field. For a minimal model with particle production emerging from first principles, we find that the abundance of radiation sourced by dark energy can be as large as $Ω_{DER}=0.03$, exceeding the bounds on relic dark radiation by three orders of magnitude. Although the background and perturbative evolution of dark energy radiation are distinct from Quintessence, we find that current and near-future cosmic microwave background and supernova data will not distinguish these models of dark energy. We also find that our constraints on all models are dominated by their impact on the expansion rate of the Universe. Considering extensions that allow the dark radiation to populate neutrinos, axions, and dark photons, we evaluate the direct detection prospects of a thermal background comprised of these candidates consistent with cosmological constraints on dark energy radiation. Our study indicates that a resolution of $∼6  meV$ is required to achieve sensitivity to relativistic neutrinos compatible with dark energy radiation in a neutrino capture experiment on tritium. We also find that dark matter axion experiments lack sensitivity to a relativistic thermal axion background, even if enhanced by dark energy radiation, and dedicated search strategies are required to probe new parameter space. We derive constraints arising from a dark photon background from oscillations into visible photons, and find that viable parameter space can be explored with the late dark energy radiation experiment.

Files

PhysRevD.110.063557.pdf

Files (5.6 MB)

Name Size Download all
md5:713dbe04e2e0b28ffa8a424f3b53d3a1
5.6 MB Preview Download

Additional details

Identifiers

DOI
10.1103/PhysRevD.110.063557
Other
oai:uchicago.tind.io:13587

Funding

National Science Foundation
PHY2210533
U.S. Department of Energy
DE-SC0011632
Walter Burke Institute for Theoretical Physics
NASA ATP
80NSSC18K0694
University of Pennsylvania
Simons Foundation
Kavli Foundation
INFN
GRANT73/Tec-Nu
Italian Space Agency
2016-24-H.0
Italian Space Agency
2016-24-H.1-201
European Union

UChicago Information

Division(s)
Institutes & Centers
Center(s) or Institute(s)
Kavli Institute for Cosmological Physics