Investigation of Absolute Photonic Band Gaps in Two-dimensional Dielectric Structures
- 1 February 1994
- journal article
- research article
- Published by Taylor & Francis in Journal of Modern Optics
- Vol. 41 (2), 385-393
- https://doi.org/10.1080/09500349414550391
Abstract
We examine the photonic band structure of two-dimensional (2D) arrays of dielectric holes using the coherent microwave transient spectroscopy (COMITS) technique. Such 2D hole arrays are constructed by embedding low-index rods (air) in a dielectric background of higher-index Stycast material (n = 3·60). The dispersion relation for electromagnetic wave propagation in these photonic crystals is directly determined using the phase sensitivity of COMITS. We find that both the square and triangular lattice structures exhibit photonic band gaps that are common to both polarizations for all wave-vectors along major symmetry axes. In addition, the connectivity of the high-index dielectric and the opening of a large gap for propagation with E field perpendicular to the hole cylinders are found to be important criteria for generating a large absolute photonic band gap.Keywords
This publication has 10 references indexed in Scilit:
- Nature of the photonic band gap: some insights from a field analysisJournal of the Optical Society of America B, 1993
- Photonic band gaps in two-dimensional square and hexagonal latticesPhysical Review B, 1992
- Photonic band gaps in two-dimensional square lattices: Square and circular rodsPhysical Review B, 1992
- Existence of a photonic band gap in two dimensionsApplied Physics Letters, 1992
- Measurement of photonic band structure in a two-dimensional periodic dielectric arrayPhysical Review Letters, 1992
- Microwave propagation in two-dimensional dielectric latticesPhysical Review Letters, 1991
- Two-dimensional photonic band structuresOptics Communications, 1991
- Broad-band microwave measurements with transient radiation from optoelectronically pulsed antennasIEEE Transactions on Microwave Theory and Techniques, 1990
- Dielectric properties of uniaxial crystals measured with optoelectronically generated microwave transient radiationApplied Physics Letters, 1989
- Local-field effects and effective-medium theory: A microscopic perspectiveAmerican Journal of Physics, 1982