BBN bounds on neutrinophilic ultralight Dark Matter
hep-ph, astro-ph.CO
Submitted: 2025-09-26
Updated: 2026-09-17
Comments: 28 pages, 10 figures, ALT text in for figures available in html and tex. Updated to match journal version
Project page: https://cajohare.github.io/AxionLimits
License: http://creativecommons.org/licenses/by-nc-sa/4.0/
The gist: The high densities in the early Universe provide a unique laboratory to constrain couplings between feebly interacting particles, such as dark matter and neutrinos.
Terminology
Abstract
The high densities in the early Universe provide a unique laboratory to constrain couplings between feebly interacting particles, such as dark matter and neutrinos. In this article, we study how Big Bang Nucleosynthesis can constrain models of Ultra-Light Dark Matter diagonally coupled to neutrinos. We follow an adiabatic formalism which allows to average-out the rapid oscillations of the Dark Matter field and consistently take into account the feedback between the neutrino and the Dark Matter fields. This feedback alters the early Universe dynamics, causing the Dark Matter energy density to scale as radiation, while the neutrino mass scales as a-1. These two effects modify primordial element abundances by modifying interaction rates and the expansion rate during nucleosynthesis. Then, we use primordial abundances to obtain leading cosmological bounds on the coupling in the range m ϕ/ eV in (10-22,10-17), namely g 0.13(m ϕ/ eV) for m ϕ 3 times 10-20, eV and g 1.8 times 10-11 sqrt m ϕ/ eV for m ϕ 3 times 10-20, eV. This consistent cosmological treatment emphasizes that, in the mass interval where its physical assumptions hold, neutrino masses cannot be generated refractively by a direct coupling with an Ultra-Light Dark Matter field.
Sources
- Cosmology of axion dark matter
- Dark Matter
- The Waning of the WIMP: Endgame?
- The Dark Photon
- String Axiverse
- An Ultralight Axion in Supersymmetry and Strings and Cosmology at Small Scales
- Axion Landscape Cosmology
- Dark Sectors and New, Light, Weakly-Coupled Particles
- Ultralight scalars as cosmological dark matter
- Wave Dark Matter
- Axion Cosmology
- Mass-radius relation of Newtonian self-gravitating Bose-Einstein condensates with short-range interactions: I. Analytical results
- Structure Formation with Scalar Field Dark Matter: The Fluid Approach
- Theory of Dark Matter Superfluidity
- Ultralight Repulsive Dark Matter and BEC
- Neutrino Portals to Dark Matter
- Neutrino Oscillations as a Probe of Light Scalar Dark Matter
- Signatures of Ultralight Dark Matter in Neutrino Oscillation Experiments
- Distorted Neutrino Oscillations From Ultralight Scalar Dark Matter
- Fuzzy Dark Matter and Non-Standard Neutrino Interactions
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