How light can ALP dark matter be?
arXiv:2511.15790 · doi:10.1088/1475-7516/2026/08/041
Abstract
We assume axion-like particles (ALPs) to provide the full dark matter abundance and derive various lower bounds on the ALP mass. We contrast the post- and pre-inflationary symmetry breaking cases and present allowed regions in the plane of ALP mass and energy scale of inflation. For the post-inflationary case, we revisit bounds from isocurvature perturbations taking into account that, as suggested by simulations, axion radiation by cosmic strings during the scaling regime provides the dominant production mechanism of dark matter, obtaining significantly weaker limits than previously. Combining isocurvature, with constraints from black hole superradiance and free streaming, we find that the bound eV applies for most cases considered here. It can be potentially relaxed to eV only in the post-inflationary case with a strongly temperature-dependent axion mass, subject to uncertainties on the axion emission spectrum. Significantly stronger bounds are obtained in the post-inflationary scenario from the non-observation of CMB tensor modes, which can be as strong as eV for small reheating efficiencies, .
37 pages, 12 figures. Version published in JCAP
References in corpus (58)
- Planck 2018 results. X. Constraints on inflation
- Axion Cosmology
- String Axiverse
- Cold and Fuzzy Dark Matter
- Ultralight scalars as cosmological dark matter
- Planck 2018 results. I. Overview and the cosmological legacy of Planck
- BICEP / Keck XIII: Improved Constraints on Primordial Gravitational Waves using Planck, WMAP, and BICEP/Keck Observations through the 2018 Observing Season
- The QCD axion, precisely
- First constraints on fuzzy dark matter from Lyman- forest data and hydrodynamical simulations
- Bose-Einstein Condensation of Dark Matter Axions
- Axion Cosmology
- Strong bound on canonical ultra-light axion dark matter from the Lyman-alpha forest
- Axion Cosmology Revisited
- CMB-S4: Forecasting Constraints on Primordial Gravitational Waves
- Axion Cosmology and the Energy Scale of Inflation
- Axions from Strings: the Attractive Solution
- More Axions from Strings
- Lyman-alpha Constraints on Ultralight Scalar Dark Matter: Implications for the Early and Late Universe
- Black hole superradiance of self-interacting scalar fields
- Axion Kinetic Misalignment Mechanism
- Dark Matter Axions Revisited
- Ultra Light Boson Dark Matter and Event Horizon Telescope Observations of M87*
- Strong Constraints on Fuzzy Dark Matter from Ultrafaint Dwarf Galaxy Eridanus II
- The Large-Misalignment Mechanism for the Formation of Compact Axion Structures: Signatures from the QCD Axion to Fuzzy Dark Matter
- Early seeds of axion miniclusters
- The dark-matter axion mass
- Lyman- forest constraints on Primordial Black Holes as Dark Matter
- Isocurvature bounds on axions revisited
- Black Hole Spin Constraints on the Mass Spectrum and Number of Axion-like Fields
- Observing Invisible Axions with Gravitational Waves
- Thermalization Process after Inflation and Effective Potential of Scalar Field
- Long-term dynamics of cosmological axion strings
- Axion minicluster power spectrum and mass function
- New Perspectives on Axion Misalignment Mechanism
- Unifying inflation and dark matter with the Peccei-Quinn field: observable axions and observable tensors
- Light axion-like dark matter must be present during inflation
- Early Structure Formation Constraints on the Ultra-Light Axion in the Post-Inflation Scenario
- Spectrum of global string networks and the axion dark matter mass
- New constraint on the tensor-to-scalar ratio from the and BICEP/Keck Array data using the profile likelihood
- Simulations of axion-like particles in the post-inflationary scenario
- Soliton Oscillations and Revised Constraints from Eridanus II of Fuzzy Dark Matter
- Global cosmic string networks as a function of tension
- Axion Dark Matter and Planck favor non-minimal couplings to gravity
- Dwarf galaxies imply dark matter is heavier than
- Recurrent Axinovae and their Cosmological Constraints
- Constraints on Dark Matter from Dynamical Heating of Stars in Ultrafaint Dwarfs. Part 2: Substructure and the Primordial Power Spectrum
- Isocurvature bounds on axion-like particle dark matter in the post-inflationary scenario
- Post-inflationary axion isocurvature perturbations facing CMB and large-scale structure
- Warm and Fuzzy Dark Matter: Free Streaming of Wave Dark Matter
- 21cm forest probes on the axion dark matter in the post-inflationary Peccei-Quinn symmetry breaking scenarios
- Revisiting Isocurvature Bounds on the Minimal QCD Axion
- Getting More Out of Black Hole Superradiance: a Statistically Rigorous Approach to Ultralight Boson Constraints from Black Hole Spin Measurements
- Probing axion dark matter with 21cm fluctuations from minihalos
- Acoustic Misalignment Mechanism for Axion Dark Matter
- New Source for QCD Axion Dark Matter Production: Curvature Induced
- Tidal Suppression of Fuzzy Dark Matter Heating in Milky Way Satellite Galaxies
- Self-interaction effects on the Kerr black hole superradiance and their observational implications
- Early Growth of Structure in Warm Wave Dark Matter