Presentation 2014-05-30
Polarization Dependence of Photonic Bandgap Properties of Periodic Stratified Dielectric Films
Masashi EGUCHI, Yasuhide TSUJI,
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Abstract(in English) Various waveguide structures based on the photonic bandgap effects caused by periodic structures, as represented by photonic bandgap fibers, have been proposed. The bandgap caused by one-dimensional (ID) periodic structures consisting of alternating layers of low and high refractive indices is the simplest of such bandgap effects and is well-known as the Bragg reflection. While there have been many reports on the bandgap properties of periodic stratified media for incident angles, polarizations, and structural parameters, most of them have focused on the regimes of omnidirectional reflection irrespective of polarization and broadband to achieve low loss multilayer omnidirectional reflectors. In this paper, to develop a single polarization hollow-core rectangular optical waveguide with the Bragg cladding, the photonic bandgap properties of periodic stratified dielectric films are systematically studied and their polarization dependence is elucidated.
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Keyword(in English) photonic bandgap / Bragg reflection / ID periodic structure / periodic stratified dielectric film / finite period / infinite period / incident angle / TE polarization / TM polarization
Paper # EST2014-4
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Committee EST
Conference Date 2014/5/23(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
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Title (in English) Polarization Dependence of Photonic Bandgap Properties of Periodic Stratified Dielectric Films
Sub Title (in English)
Keyword(1) photonic bandgap
Keyword(2) Bragg reflection
Keyword(3) ID periodic structure
Keyword(4) periodic stratified dielectric film
Keyword(5) finite period
Keyword(6) infinite period
Keyword(7) incident angle
Keyword(8) TE polarization
Keyword(9) TM polarization
1st Author's Name Masashi EGUCHI
1st Author's Affiliation Department of Photonics System Technology, Chitose Institute of Science and Technology()
2nd Author's Name Yasuhide TSUJI
2nd Author's Affiliation Division of Information and Electronic Engineering, Graduate School of Engineering, Muroran Institute of Technology
Date 2014-05-30
Paper # EST2014-4
Volume (vol) vol.114
Number (no) 69
Page pp.pp.-
#Pages 6
Date of Issue