Impact of Helical Electromagnetic Fields on the Axion Window
arXiv:2012.00896 · doi:10.1088/1475-7516/2021/03/025
Abstract
Primordial electromagnetic fields can strongly affect the cosmic evolution of axions, and vice versa. We show that if helical electromagnetic fields are coherently produced in the early universe, their remnants source a field velocity to the coupled axions and enhance the relic abundance of axion dark matter. We discuss the implications for the QCD axion and axion-like particles that are coupled to the SM or hidden gauge groups. For a QCD axion coupled to hidden photons, we find that the conventional window for the axion decay constant can be completely closed due to overproduction of axion dark matter by helical electromagnetic fields as little as , where is the gauge coupling and is the effective extra relativistic degrees of freedom of the hidden photons.
24 pages, 3 figures, v2: published in JCAP
References in corpus (10)
- Ultralight scalars as cosmological dark matter
- Flux Compactification
- N-flationary magnetic fields
- Lyman-alpha Constraints on Ultralight Scalar Dark Matter: Implications for the Early and Late Universe
- Update of axion CDM energy density
- Universal Constraints on Axions from Inflation
- Early Cosmological Evolution of Primordial Electromagnetic Fields
- Implications of a Primordial Magnetic Field for Magnetic Monopoles, Axions, and Dirac Neutrinos
- Evolution of axions in the presence of primordial magnetic fields
- Reheating-Induced Axion Dark Matter After Low Scale Inflation