Waveguidance by the photonic bandgap effect in optical fibres
- 1 January 1999
- journal article
- Published by IOP Publishing in Journal of Optics A: Pure and Applied Optics
- Vol. 1 (4), 477-482
- https://doi.org/10.1088/1464-4258/1/4/311
Abstract
Photonic crystals form a new class of intriguing building blocks to be utilized in future optoelectronics and electromagnetics. One of the most exciting possibilities offered by photonic crystals is the realization of new types of electromagnetic waveguides. In the optical domain, the most mature technology for such photonic bandgap (PBG) waveguides is in optical fibre configurations. These new fibres can be classified in a fundamentally different way to all optical waveguides and possess radically different guiding properties due to PBG guidance, as opposed to guidance by total internal reflection. In this paper we summarize and review our theoretical work demonstrating the underlying physical principles of PBG guiding optical fibres and discuss some of their unique waveguiding properties.Keywords
This publication has 19 references indexed in Scilit:
- Experimental Demonstration of Guiding and Bending of Electromagnetic Waves in a Photonic CrystalScience, 1998
- Properties of photonic crystal fiber and the effective index modelJournal of the Optical Society of America A, 1998
- Endlessly single-mode photonic crystal fiberOptics Letters, 1997
- High Transmission through Sharp Bends in Photonic Crystal WaveguidesPhysical Review Letters, 1996
- All-silica single-mode optical fiber with photonic crystal claddingOptics Letters, 1996
- Two-dimensional photonic-bandgap structures operating at near-infrared wavelengthsNature, 1996
- Modal analysis of optical guides with two-dimensional photonic band-gap boundariesJournal of Applied Physics, 1996
- Full 2-D photonic bandgaps in silica/air structuresElectronics Letters, 1995
- Strong localization of photons in certain disordered dielectric superlatticesPhysical Review Letters, 1987
- Inhibited Spontaneous Emission in Solid-State Physics and ElectronicsPhysical Review Letters, 1987