Cosmological Limits on Strong Dark Forces
hep-ph, astro-ph.CO, gr-qc
Submitted: 2025-11-12
Updated: 2026-09-12
Comments: 26 pages, 15 figures. Journal version
License: http://creativecommons.org/licenses/by/4.0/
The gist: We showcase cosmology's ability to constrain long-range forces between dark matter particles.
Terminology
Abstract
We showcase cosmology's ability to constrain long-range forces between dark matter particles. Specifically, we consider a fermionic dark matter interacting via a Yukawa-coupled light scalar, focusing on regimes where the dark forces are stronger than gravitational and yet unconstrained. We show that the dark sector dynamics, both at the background and perturbation levels, is far richer than what can be captured with just the static interparticle Yukawa potential. The background dynamics includes an attractor that funnels a wide range of initial conditions onto an evolution unique to each parameter space. In a large swath of parameter space beyond existing limits, the dark sector deviates drastically from cold dark matter in observable epochs. We rule out this parameter space using existing constraints on dark-sector equation of state and small-scale cosmic perturbations, thus setting the strongest constraints yet on dark matter self-interactions at length scales shorter than 100 kpc. In addition, we briefly discuss repulsive dark forces and place cosmological limits that are stricter than in the attractive case.
Sources
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- Coherent Self-Interactions of Dark Matter in the Bullet Cluster
- Galaxy Satellites and the Weak Equivalence Principle
- Constraining Interactions in Cosmology's Dark Sector
- Adiabatic instability in coupled dark energy-dark matter models
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- From 100 kpc to 10 Gpc: Dark Matter self-interactions before and after DESI
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- Unveiling dark fifth forces with linear cosmology
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- Halo Formation from Yukawa Forces in the Very Early Universe
- Primordial dark matter halos from fifth forces
- Solving the Wrong Hierarchy Problem
- Solving the Hierarchy Problem Discretely
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