DocumentCode :
1080152
Title :
Polarization-Dependent Bandgap Splitting and Mode Guiding in Liquid Crystal Photonic Bandgap Fibers
Author :
Ren, Guobin ; Shum, Ping ; Hu, JuanJuan ; Yu, Xia ; Gong, Yandong
Author_Institution :
Network Technol. Res. Centre, Nanyang Technol. Univ., Singapore
Volume :
26
Issue :
22
fYear :
2008
Firstpage :
3650
Lastpage :
3659
Abstract :
A theoretical investigation is presented for nematic liquid crystal photonic bandgap fibers (LCPBGFs), in which the rotation angle of liquid crystal´s director n could be arbitrarily controlled by external electric field. Based on the investigation on the polarization effect of photonic bands, we propose two orthogonal polarization-dependent bandgap maps to describe the mode guiding behavior. The symmetry properties analysis of photonic band structure reveals that the bandgap map of LCPBGFs is approximately independent of the rotation angle of director. The guiding properties of LCPBGFs including the position and width of high transmission windows, single-mode single-polarization or ultrahigh birefringence guiding, confinement loss, and coupling loss are investigated. Specifically, the high loss peaks due to the coupling between guided mode and polarization-dependent photonic bands will greatly narrow the transmission windows of the LCPBGFs. The polarization axis of the guided mode is determined by the rotation angle of the director, which could be controlled by external electric field.
Keywords :
birefringence; holey fibres; nematic liquid crystals; optical fibre losses; optical fibre polarisation; optical waveguides; photonic band gap; photonic crystals; bandgap map; confinement loss; coupling loss; liquid crystal director; mode guiding; nematic liquid crystal photonic bandgap fibers; photonic band structure; polarization-dependent bandgap splitting; rotation angle; single-mode single-polarization; transmission windows; ultrahigh birefringence guiding; Birefringence; Couplings; Liquid crystals; Optical control; Optical losses; Photonic band gap; Photonic bandgap fibers; Photonic crystal fibers; Polarization; Propagation losses; Liquid crystals; photonic bandgap fiber; polarization; polarization maintaining fiber; single-mode single-polarization;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2008.920125
Filename :
4758656
Link To Document :
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