Fuzzy Dark Matter from Infrared Confining Dynamics
arXiv:1701.01136 · doi:10.1103/PhysRevLett.118.141801
Abstract
A very light boson of mass eV may potentially be a viable dark matter (DM) candidate which can avoid phenomenological problems associated with cold DM. Such "fuzzy DM (FDM)" may naturally be an axion with a decay constant GeV, and a mass with eV. Here we propose a concrete model where arises as a dynamical scale from infrared confining dynamics, analogous to QCD. Our model is an alternative to the usual approach of generating through string theoretic instanton effects. We outline the features of this scenario that result from various cosmological constraints. We find that those constraints are suggestive of a period of mild of inflation, perhaps from a strong first order phase transition, that reheats the Standard Model (SM) sector only. A typical prediction of our scenario, broadly speaking, is a larger effective number of neutrinos compared to the SM value , as inferred from precision measurements of the cosmic microwave background. Some of the new degrees of freedom may be identified as "sterile neutrinos," which may be required to explain certain neutrino oscillation anomalies. Hence, aspects of our scenario could be testable in terrestrial experiments, which is a novelty of our FDM model.
v2: 5 pages, 1 figure; references added, wording improved, matches PRL version
References in corpus (11)
- Ultralight scalars as cosmological dark matter
- The Reactor Antineutrino Anomaly
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- A search for ultra-light axions using precision cosmological data
- Cosmology with self-interacting sterile neutrinos and dark matter - A pseudoscalar model
- Neutrino Oscillations as a Probe of Light Scalar Dark Matter
- Collisional production of sterile neutrinos via secret interactions and cosmological implications
- Unveiling secret interactions among sterile neutrinos with big-bang nucleosynthesis
- One flavor QCD
- Light sterile neutrinos from a late phase transition
- Cosmology with Light Axions from Technicolor
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