Slow light, open cavity formation, and large longitudinal electric field on slab waveguide made of indefinite permittivity materials
arXiv:0902.4482 · doi:10.1103/PhysRevA.82.013811
Abstract
The optical properties of slab waveguides made of indefinite permittivity ($\vep$) materials (IEM) are considered. In this medium the transverse permittivity is negative while the longitudinal permittivity is positive. At any given frequency the waveguide supports an infinite number of transverse magnetic (TM) eigenmodes. For a slab waveguide with a fixed thickness, at most only one TM mode is forward-wave. The rest of them are backward waves which can have very large phase index. At a critical thickness, the waveguide supports degenerate forward- and backward-wave modes with zero group velocity. Above the critical thickness, the waveguide supports complex-conjugate decay modes instead of propagating modes. The presence of loss in IEMs will lift the degeneracy, resulting in modes with finite group velocity. Feasible realization is proposed. The performance of IEM waveguide is analyzed and possible applications are discussed which are supported by numerical calculations. These slab waveguides can be used to make optical delay lines in optical buffers to slow down and trap light, to form open cavities, to generate strong longitudinal electric fields, and as phase shifters in optical integrated circuits.
14 figures, 12 pages in RevTex4
References in corpus (7)
- Terahertz surface plasmon polariton propagation and focusing on periodically corrugated metal wires
- Magnifying superlens in the visible frequency range
- Compensation of loss in propagating surface plasmon polariton by gain in adjacent dielectric medium
- Wide-bandwidth, tunable, multiple-pulse-width optical delays using slow light in cesium vapor
- Superlens imaging theory for anisotropic nanostructured metamaterials with broadband all-angle negative refraction
- Nanowire waveguide made from extremely anisotropic metamaterials
- Localization of light in a lamellar structure with left-handed medium : the light wheel
Cited by in corpus (4)
- Nanoscale Metamaterial Optical Waveguides with Ultrahigh Refractive Indices
- Near-perfect absorption in epsilon-near-zero structures with hyperbolic dispersion
- Zero-index and Hyperbolic Metacavities: Fundamentals and Applications
- Slow light mediated by mode topological transitions in hyperbolic waveguides