Title
Optimization Of Complete Band Gaps For Photonic Crystal Slabs Through Use Of Symmetry Breaking Hole Shapes
Abstract
A complete photonic band gap (PBG) in photonic crystal slab (PCS) devices is desirable for various applications, and a realizable device of this kind demands minimal transmittance in-plane as well as out of plane. While in the past much work has considered this problem, none have held transverse confinement as a prime factor. In order to achieve our goal, square and triangular hole shapes are considered. Looking at sharp featured shapes as well as their fabrication realizable rounded counterparts and an even more rudimentary triangular cluster of circles, we look to break the crystalmode symmetries for TM photonic bands and, therefore, open a complete band gap between the 1st and 2nd bands for both TE and TM light. TE/TM gap overlap is optimized for single-slab-mode operation, via the effective index method, for hole size, hole orientation, and slab thickness - all as functions of the lattice constant, a, and operational wavelength, δ. It is found that rounded triangular holes and tri-clustered circular holes of size 0.88a and thickness d/δ = 0.112 show identical photonic behavior that provides an optimized gap overlap of 0.0496 (ωa/2πc = a/δ) with a 12.81% gap figure of merit (Δω/ω 0). © 2009 SPIE.
Publication Date
5-25-2009
Publication Title
Proceedings of SPIE - The International Society for Optical Engineering
Volume
7223
Number of Pages
-
Document Type
Article; Proceedings Paper
Personal Identifier
scopus
DOI Link
https://doi.org/10.1117/12.809023
Copyright Status
Unknown
Socpus ID
65649122685 (Scopus)
Source API URL
https://api.elsevier.com/content/abstract/scopus_id/65649122685
STARS Citation
Weed, Matthew D.; Seigneur, Hubert P.; and Schoenfeld, Winston V., "Optimization Of Complete Band Gaps For Photonic Crystal Slabs Through Use Of Symmetry Breaking Hole Shapes" (2009). Scopus Export 2000s. 12147.
https://stars.library.ucf.edu/scopus2000/12147