Self-induced tunable transparency in layered superconductors
arXiv:1005.3389 · doi:10.1103/PhysRevB.82.144521
Abstract
We predict a novel nonlinear electromagnetic phenomenon in layered superconducting slabs irradiated from one side by an electromagnetic plane wave. We show that the reflectance and transmittance of the slab can vary over a wide range, from nearly zero to one, when changing the incident wave amplitude. Thus changing the amplitude of the incident wave can induce either the total transmission or reflection of the incident wave. In addition, the dependence of the superconductor transmittance on the incident wave amplitude has an unusual hysteretic behavior with jumps. This remarkable nonlinear effect (self-induced transparency) can be observed even at small amplitudes, when the wave frequency is close to the Josephson plasma frequency .
9 pages, 7 figures
References in corpus (3)
- Terahertz Josephson plasma waves in layered superconductors: spectrum, generation, nonlinear, and quantum phenomena
- Tunable Electromagnetically Induced Transparency and Absorption with Dressed Superconducting Qubits
- Control of photon propagation via electromagnetically induced transparency in lossless media
Cited by in corpus (4)
- Nonlinear light-matter interaction at terahertz frequencies
- Self-induced THz-waves transmissivity of waveguides with finite-length layered superconductors
- Superposition principle for nonlinear Josephson plasma waves in layered superconductors
- Nonlinear focusing of Terahertz laser beam using layered superconductor