Frequency shifts of radiating particle moving in EIT metamaterial
arXiv:1511.09098 · doi:10.1364/JOSAB.33.000412
Abstract
Nowadays, there is considerable interest in metamaterials which realize the electromagnetically induced transparency in a classical system. We consider the frequency shifts of particle moving in metamaterials exhibiting electromagnetically induced transparency effect. The dramatic change of the material dispersion due to the EIT influences the conditions for signal propagation in the medium and has a significant impact on the Doppler effect, possibly leading to the optical control over this phenomenon. The dependence of the Doppler shift to the source frequency and velocity and radiation spectra on external parameters is examined. It was found that for source frequencies fitting transparency window for particular range of source velocities cutoffs appear, i.e. the radiation is not emitted. Our theoretical findings are proved analytically and confirmed by numerical simulations based on finite-difference time-domain method.
10 pages, 12 figures
References in corpus (6)
- Electromagnetically Induced Transparency and Absorption in Metamaterials: The Radiating Two-Oscillator Model and Its Experimental Confirmation
- Classical Analogue of Electromagnetically Induced Transparency with a Metal-Superconductor Hybrid Metamaterial
- Beam splitting and Hong-Ou-Mandel interference for stored light
- EIT-related phenomena and their mechanical analogs
- Electromagnetically induced transparency like transmission in a metamaterial composed of cut-wire pairs with indirect coupling
- Complex Doppler effect in left-handed metamaterials