Extension of the electrodynamics in the presence of the axion and dark photon
arXiv:1806.09972 · doi:10.1142/S0217751X1950012X
Abstract
We present the extended electrodynamics in the presence of the axion and dark photon. We derive the extended versions of Maxwell's equations and dark Maxwell's equations (for both massive and massless dark photons) as well as the wave equations. We discuss the implications of this extended electrodynamics including the enhanced effects in the particle conversions under the external magnetic or dark magnetic field. We also discuss the recently reported anomaly in the redshifted 21cm spectrum using the extended electrodynamics.
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References in corpus (17)
- A Theory of Dark Matter
- An absorption profile centred at 78 megahertz in the sky-averaged spectrum
- Possible interaction between baryons and dark-matter particles revealed by the first stars
- Insights on Dark Matter from Hydrogen during Cosmic Dawn
- Enhanced global signal of neutral hydrogen due to excess radiation at cosmic dawn
- Severely Constraining Dark Matter Interpretations of the 21-cm Anomaly
- Constraining Baryon--Dark Matter Scattering with the Cosmic Dawn 21-cm Signal
- New Physics in the Rayleigh-Jeans Tail of the CMB
- The radio telescope search for the resonant conversion of cold dark matter axions from the magnetized astrophysical sources
- Bounds on Dark Matter annihilations from 21 cm data
- Portal Connecting Dark Photons and Axions
- Axion-Photon Conversion and Effects on 21cm Observation
- Implications of the dark axion portal for the muon g-2, B-factories, fixed target neutrino experiments and beam dumps
- Dark photon relic dark matter production through the dark axion portal
- Enhanced axion-photon coupling in GUT with hidden photon
- Late-time magnetogenesis driven by ALP dark matter and dark photon
- Gauge see-saw: A mechanism for a light gauge boson
Cited by in corpus (5)
- Implications of the dark axion portal for SHiP and FASER and the advantages of monophoton signals
- First search for dark photon dark matter with a MADMAX prototype
- The axion-photon mixing in non-linear electrodynamic scenarios
- Possible s-wave annihilation for MeV dark matter with the 21-cm absorption
- Subfrequency search at a laser as a signal of dark matter sector particles