Low-Loss Metamaterials Based on Classical Electromagnetically Induced Transparency
Abstract
We demonstrate theoretically that electromagnetically induced transparency can be achieved in metamaterials, in which electromagnetic radiation is interacting resonantly with mesoscopic oscillators rather than with atoms. We describe novel metamaterial designs that can support a full dark resonant state upon interaction with an electromagnetic beam and we present results of its frequency-dependent effective permeability and permittivity. These results, showing a transparency window with extremely low absorption and strong dispersion, are confirmed by accurate simulations of the electromagnetic field propagation in the metamaterial.
- Publication:
-
Physical Review Letters
- Pub Date:
- February 2009
- DOI:
- 10.1103/PhysRevLett.102.053901
- arXiv:
- arXiv:0807.2478
- Bibcode:
- 2009PhRvL.102e3901T
- Keywords:
-
- 42.70.-a;
- 41.20.Jb;
- 42.50.Gy;
- Optical materials;
- Electromagnetic wave propagation;
- radiowave propagation;
- Effects of atomic coherence on propagation absorption and amplification of light;
- electromagnetically induced transparency and absorption;
- Condensed Matter - Materials Science;
- Physics - Optics
- E-Print:
- Phys. Rev. Lett. 102, 053901 (2009)