DocumentCode :
3606476
Title :
Polarization-Independent Surface Plasmon Liquid Crystal Photonic Crystal Multiplexer–Demultiplexer
Author :
Hameed, Mohamed Farhat O. ; Balat, R.T. ; Heikal, A.M. ; Abo-Elkhier, Mervat M. ; Abo el Maaty, M.I. ; Obayya, S.S.A.
Author_Institution :
Center for Photonics & Smart Mater., Zewail City of Sci. & Technol., Giza, Egypt
Volume :
7
Issue :
5
fYear :
2015
Firstpage :
1
Lastpage :
10
Abstract :
A novel design of polarization-independent surface plasmon multiplexer- demultiplexer (MUX/DEMUX) based on dual-core photonic crystal fiber with a central gold wire is proposed and analyzed. The cladding air holes are infiltrated with a nematic liquid crystal of type E7 with rotation angle φ, and the background material is a soft glass of type SF57 (lead silica). The simulation results are obtained using full-vectorial finite-difference method and coupled mode theory. At φ = 900, the suggested MUX/DEMUX has a short device length of 953.254 μm for x-polarized modes with broad bandwidths of 235 and 175 nm around wavelengths of 1.3 and 1.55 μm, respectively, with low cross-talk better than -20 dB. For y-polarized modes, the reported MUX/DEMUX has short device length of 1322.86 μm with broad bandwidths of 193 and 170 nm around 1.3 and 1.55 μm, respectively. Moreover, the polarization independence is achieved with short device lengths of 1138.06 and 1180 μm at φ = 90° and 0°, respectively.
Keywords :
coupled mode analysis; demultiplexing; finite difference methods; holey fibres; multiplexing; nematic liquid crystals; optical fibre communication; photonic crystals; surface plasmon resonance; central gold wire; cladding air holes; coupled mode theory; dual-core photonic crystal fiber; full-vectorial finite-difference method; liquid crystal photonic crystal; polarization-independent surface plasmon multiplexer-demultiplexer; rotation angle; size 1322.86 mum; soft glass; type E7 nematic liquid crystal; x-polarized modes; y-polarized modes; Couplings; Gold; Indexes; Optical surface waves; Plasmons; Surface waves; Wires; Polarization independent device; Polarization-independent device; couple mode theory; finite difference method; finite-difference method; liquid crystal; multiplexer-demultiplexer; multiplexer???demultiplexer; plasmonics;
fLanguage :
English
Journal_Title :
Photonics Journal, IEEE
Publisher :
ieee
ISSN :
1943-0655
Type :
jour
DOI :
10.1109/JPHOT.2015.2480538
Filename :
7273740
Link To Document :
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