DocumentCode :
1313542
Title :
A Compact and Temperature-Sensitive Directional Coupler Based on Photonic Crystal Fiber Filled With Liquid Crystal 6CHBT
Author :
Hu, Dora Juan Juan ; Shum, Perry Ping ; Jun Long Lim ; Cui, Yan ; Milenko, K. ; Yixin Wang ; Wolinski, T.
Author_Institution :
RF&Opt. Dept., Inst. for Infocomm Res., Singapore, Singapore
Volume :
4
Issue :
5
fYear :
2012
Firstpage :
2010
Lastpage :
2016
Abstract :
A directional coupler structure formed by a nematic liquid crystal (NLC)-filled photonic crystal fiber (PCF) represents a promising configuration in sensing applications. Because of large refractive index difference between the NLC and silica material, the mode coupling between the NLC waveguide and the silica core is more complicated than the situation of coupling between two fundamental modes of the waveguides. Therefore, it is necessary to perform a theoretical investigation of the mode properties associated with the experimental studies of the coupling characteristics. In this paper, we present a thorough analysis, both theoretically and experimentally, of the directional coupler structure, including the mode properties, coupling characteristics, and thermal sensing properties. The temperature response of the device is experimentally measured, showing a polynomial curve in nematic phase and a linear curve in isotropic phase. The nonlinearity of the temperature response of the device in nematic phase and the linearity in isotropic phase are attributed to the temperature dependence of the refractive index of the NLC. Specifically, the sensitivity is -3.86 nm/°C in isotropic phase of the 6CHBT with good linearity and shows good agreement with simulation results.
Keywords :
holey fibres; nematic liquid crystals; optical directional couplers; optical fibre couplers; optical fibre fabrication; photonic crystals; refractive index; coupling characteristics; isotropic phase; mode coupling; mode properties; nematic liquid crystal 6CHBT; nematic phase; photonic crystal fiber; polynomial curve; refractive index difference; silica core; silica material; temperature response; temperature sensitive directional coupler; thermal sensing; Couplings; Directional couplers; Refractive index; Silicon compounds; Temperature; Temperature measurement; Temperature sensors; Nematic liquid crystal (NLC); photonic crystal fiber (PCF); selective infiltration; temperature sensor;
fLanguage :
English
Journal_Title :
Photonics Journal, IEEE
Publisher :
ieee
ISSN :
1943-0655
Type :
jour
DOI :
10.1109/JPHOT.2012.2223662
Filename :
6327583
Link To Document :
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