Photonic band gaps with layer-by-layer double-etched structures
- 15 December 1996
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 80 (12) , 6749-6753
- https://doi.org/10.1063/1.363802
Abstract
Periodic layer-by-layer dielectric structures with full three-dimensional photonic band gaps have been designed and fabricated. In contrast to previous layer-by-layer structures the rods in each successive layer are at an angle of 70.5° to each other, achieved by etching both sides of a silicon wafer. Photonic band-structure calculations are utilized to optimize the photonic band gap by varying the structural geometry. The structure has been fabricated by double etching Si wafers producing millimeter wave photonic band gaps between 300 and 500 GHz, in excellent agreement with band calculations. Overetching this structure produces a multiply connected geometry and increases both the size and frequency of the photonic band gap, in very good agreement with experimental measurements. This new robust double-etched structure doubles the frequency possible from a single Si wafer, and can be scaled to produced band gaps at higher frequencies.This publication has 10 references indexed in Scilit:
- Double-etch geometry for millimeter-wave photonic band-gap crystalsApplied Physics Letters, 1994
- Design of three-dimensional photonic crystals at submicron lengthscalesApplied Physics Letters, 1994
- Terahertz spectroscopy of three-dimensional photonic band-gap crystalsOptics Letters, 1994
- Measurement of a three-dimensional photonic band gap in a crystal structure made of dielectric rodsPhysical Review B, 1994
- Effect of surface composition on the radiation pattern from a photonic-crystal planar-dipole antennaApplied Physics Letters, 1994
- Micromachined millimeter-wave photonic band-gap crystalsApplied Physics Letters, 1994
- Photonic band gaps in three dimensions: New layer-by-layer periodic structuresSolid State Communications, 1994
- Radiation properties of a planar antenna on a photonic-crystal substrateJournal of the Optical Society of America B, 1993
- Photonic band structure: The face-centered-cubic case employing nonspherical atomsPhysical Review Letters, 1991
- Existence of a photonic gap in periodic dielectric structuresPhysical Review Letters, 1990