Hidden Sector Photon Coupling of Resonant Cavities
arXiv:1304.6866 · doi:10.1103/PhysRevD.87.115008
Abstract
Many beyond the standard model theories introduce light paraphotons, a hypothetical spin-1 field that kinetically mixes with photons. Microwave cavity experiments have traditionally searched for paraphotons via transmission of power from an actively driven cavity to a passive receiver cavity, with the two cavities separated by a barrier that is impenetrable to photons. We extend this measurement technique to account for two-way coupling between the cavities and show that the presence of a paraphoton field can alter the resonant frequencies of the coupled cavity pair. We propose an experiment that exploits this effect and uses measurements of a cavities resonant frequency to constrain the paraphoton-photon mixing parameter, chi. We show that such an experiment can improve sensitivity to chi over existing experiments for paraphoton masses less than the resonant frequency of the cavity, and eliminate some of the most common systematics for resonant cavity experiments.
6 pages, 4 figures
References in corpus (20)
- The Low-Energy Frontier of Particle Physics
- New ALPS Results on Hidden-Sector Lightweights
- Naturally Light Hidden Photons in LARGE Volume String Compactifications
- Search for axion-like particles using a variable baseline photon regeneration technique
- Laser experiments explore the hidden sector
- Microwave Background Constraints on Mixing of Photons with Hidden Photons
- Test of Lorentz Invariance in Electrodynamics Using Rotating Cryogenic Sapphire Microwave Oscillators
- Signatures of a hidden cosmic microwave background
- New Experimental limit on Optical Photon Coupling to Neutral, Scalar Bosons
- A Cavity Experiment to Search for Hidden Sector Photons
- A Search for Hidden Sector Photons with ADMX
- Search for photon oscillations into massive particles
- Ultra-low-phase-noise cryocooled microwave dielectric-sapphire-resonator oscillators with 1 x 10^-16 frequency instability
- New Experimental Limit on Photon Hidden-Sector Paraphoton Mixing
- Microwave cavity light shining through a wall optimization and experiment
- Magnetically amplified tunneling of the 3rd kind as a probe of minicharged particles
- Resonant Regeneration in the Sub-Quantum Regime -- A demonstration of fractional quantum interference
- Magnetically amplified light-shining-through-walls via virtual minicharged particles
- Long Distance Signaling Using Axion-like Particles
- Microwave cavity hidden sector photon threshold crossing
Cited by in corpus (14)
- Vector Dark Matter from Inflationary Fluctuations
- Dark Matter Direct Detection with Accelerometers
- A Radio for Hidden-Photon Dark Matter Detection
- Spin Precession Experiments for Light Axionic Dark Matter
- Cryogenic resonant microwave cavity searches for hidden sector photons
- A 3D Printed Superconducting Aluminium Microwave Cavity
- Axion Detection with Precision Frequency Metrology
- Reproductive Freeze-In of Self-Interacting Dark Matter
- Probing Dark Universe with Exceptional Points
- Characterisation of Cryogenic Material Properties of 3D-Printed Superconducting Niobium using a 3D Lumped Element Microwave Cavity
- Cross-correlation measurement techniques for cavity-based axion and weakly interacting slim particle searches
- Creating Tuneable Microwave Media from a Two-Dimensional Lattice of Re-entrant Posts
- Light-shinning-through-thin-wall radio frequency cavities for probing dark photon
- Metallised 3D printed plastic resonator demonstrates superconductivity below 4 K