Precise predictions for the QCD axion contribution to dark radiation with full phase-space evolution
arXiv:2410.18186 · doi:10.1007/JHEP02(2025)108
Abstract
We compute the QCD axion contribution to the energy density of dark radiation, parameterized by , by solving Boltzmann equations for the momentum distribution functions including the effects of quantum statistics for all particles involved in the axion production processes. This approach gives precise prediction for independently on whether axions are produced via freeze-out or freeze-in. We focus on axions produced via flavor-conserving and flavor-violating interactions with leptons. Our precise predictions for can differ from those assuming thermal shape for the momentum distribution functions, as commonly done in the literature, by more than the experimental precision of future Cosmic Microwave Background (CMB) observations. Current lower limits on the axion couplings from Planck constraints on are also affected by our precise computation which, in particular, results in a strongly relaxed bound on flavor-violating axion couplings to tau lepton and muon or electron.
31 pages, 8 figures; matches published version; supplementary materials can be found at https://doi.org/10.5281/zenodo.14924642
References in corpus (18)
- Massive neutrinos and cosmology
- Flaxion: a minimal extension to solve puzzles in the standard model
- Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined
- micrOMEGAs 6.0: N-component dark matter
- Upper Limit on the QCD Axion Mass from Isolated Neutron Star Cooling
- A search for two body muon decay signals
- Cosmological Bound on the QCD Axion Mass, Redux
- Thermal axion production at low temperatures: a smooth treatment of the QCD phase transition
- Thermal QCD Axions across Thresholds
- Novel cosmological bounds on thermally-produced axion-like particles
- Production of Thermal Axions across the ElectroWeak Phase Transition
- The DFSZ axion in the CMB
- Flavor Violating Axions in the Early Universe
- Naturally astrophobic QCD axion
- The QCD Axion: Some Like It Hot
- Back to the phase space: thermal axion dark radiation via couplings to standard model fermions
- Flavor-Violating Higgs Decays and Stellar Cooling Anomalies in Axion Models
- Dark Radiation from the Primordial Thermal Bath in Momentum Space
Cited by in corpus (6)
- Free-Streaming Neutrinos and Their Phase Shift in Current and Future CMB Power Spectra
- Using to constrain preferred axion model dark matter
- Improved cosmological constraints on axion-lepton interactions
- Axions at the meV Crossroads: Theory, Cosmology, Astrophysics, and Experiments
- Seasons of Dark Matter Freeze-In Shaped by the Weather of the Early Universe
- Beyond thermal approximations: Precise cosmological bounds on Axion-Like Particles