Interactions of the scalaron dark matter in f (R) gravity
Yuri Shtanov, Yurii Sheiko
astro-ph.CO, gr-qc, hep-ph
Submitted: 2025-05-19
Updated: 2026-08-21
Comments: 23 pages, 5 figures, a thoroughly revised version that clarifies and resolves the controversies in the previous calculation of the decay rate into two photons
Journal ref: JCAP 07 (2025) 033
DOI: 10.1088/1475-7516/2025/07/033
License: http://creativecommons.org/licenses/by/4.0/
The gist: In f(R) gravity, the scalaron -- a scalar degree of freedom arising from modification of General Relativity -- could account for all dark matter in the universe if its mass lies in the meV--MeV range.
Terminology
Abstract
In f(R) gravity, the scalaron -- a scalar degree of freedom arising from modification of General Relativity -- could account for all dark matter in the universe if its mass lies in the meV--MeV range. In this work, we revisit the scalaron's interactions with Standard Model particles, assuming their minimal coupling to gravity. In particular, we provide a detailed calculation of the scalaron's decay rate into two photons -- a one-loop process of significant interest that has been the subject of discrepancies in the literature. We demonstrate that a direct evaluation of loop diagrams with appropriate regularisation eliminates the ambiguities inherent in methods relying on Jacobians from field redefinitions. Assuming the scalaron constitutes all of dark matter, we calculate the average cosmological background radiation produced by its decays into photons. We also estimate the contribution of primordial scalarons emitted in the hot early universe to the present dark matter density and find it to be negligible. Our results support all key aspects of the original scenario, in which scalaron dark matter behaves as a coherently oscillating field.
Sources
- Dark energy, inflation and dark matter from modified F(R) gravity
- Dark Matter from R^2-gravity
- Modified gravity and dark matter
- High-energy scalarons in R^{2} gravity as a model for Dark Matter in galaxies
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- Cosmic History of Chameleonic Dark Matter in $F(R)$ Gravity
- Dark matter as scalaron in $f(R)$ gravity models
- Scalarons mimicking Dark Matter in the Hu-Sawicki model of f(R) gravity
- Light scalaron as dark matter
- Unified $f(R)$ gravity at local scales
- f(R) Theories Of Gravity
- f(R) theories
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- Initial conditions for the scalaron dark matter
- Scalaron dark matter and the thermal history of the universe
- Planck 2018 results. X. Constraints on inflation
- Tabletop potentials for inflation from $f(R)$ gravity
- On the Conformal Frames in $f(R)$ Gravity
- Hints of Modified Gravity in Cosmos and in the Lab?
- Planck 2018 results. VI. Cosmological parameters
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