Mixing of photons with light pseudoscalars in time-dependent magnetic fields
arXiv:1608.03458 · doi:10.1140/epjc/s10052-016-4483-0
Abstract
The effects of an external time-dependent magnetic field in the conversion probability of photon-to-axion-like particles are studied. Our findings show that for a certain time regime, the amplitude of the produced axion-like field can be enlarged with respect to the static case, thus, enhancing the probability of conversion.
some clarifications. To appear in EPJC
References in corpus (11)
- Big-Bang Nucleosynthesis
- Search for axion-like particles using a variable baseline photon regeneration technique
- No light shining through a wall : new results from a photoregeneration experiment
- Resonantly Enhanced Axion-Photon Regeneration
- A Cavity Experiment to Search for Hidden Sector Photons
- Search for photon oscillations into massive particles
- Detailed design of a resonantly-enhanced axion-photon regeneration experiment
- Optimizing Light-Shining-through-a-Wall Experiments for Axion and other WISP Searches
- Vacuum Birefringence in a Rotating Magnetic Field
- Axions and "Light Shining Through a Wall": A Detailed Theoretical Analysis
- Photon-Axion conversions in transversely inhomogeneous magnetic fields