DocumentCode :
1193664
Title :
Numerical Modeling of Cryogenic Temperature Sensors Based on Plasmonic Oscillations in Metallic Nanoparticles Embedded Into Photonic Crystal Fibers
Author :
Florous, Nikolaos John ; Saitoh, Kunimasa ; Koshiba, Masanori
Author_Institution :
Div. of Media & Network Technol., Hokkaido Univ., Sapporo
Volume :
19
Issue :
5
fYear :
2007
fDate :
3/1/2007 12:00:00 AM
Firstpage :
324
Lastpage :
326
Abstract :
We perform a numerical investigation on the operation of an inline temperature sensor based on the inclusion of metallic nanoparticles into photonic crystal fibers (PCFs). This creates a simple, yet robust, platform which can be used to investigate the properties of nanoparticles, for sensing, spectroscopy, and optical switching applications. The optical response of gold nanoparticles embedded in the PCF matrix was evaluated as a function of temperature and the use of the structure as an inline fiber-optic temperature sensor is theoretically described. A blue-shift in the localized surface plasmon resonance related peak, as well as narrowing of the plasmon resonance, was observed upon decreasing the temperature of the nanoparticle embedded into the PCF at very low temperatures, thus permitting the operation of this sensing platform at cryogenic temperatures
Keywords :
cryogenics; fibre optic sensors; gold; nanoparticles; photonic crystals; spectral line shift; surface plasmon resonance; temperature sensors; blue-shift; cryogenic temperature sensors; fiber-optic sensor; gold nanoparticles; photonic crystal fibers; plasmonic oscillations; surface plasmon resonance; Cryogenics; Nanoparticles; Numerical models; Optical sensors; Photonic crystal fibers; Plasmons; Resonance; Robustness; Spectroscopy; Temperature sensors; Drude model of metals; liquid sensors; photonic crystal fiber (PCF); sensitivity analysis; temperature-dependent Sellmeier equations; virtual boundary method;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2007.891618
Filename :
4116736
Link To Document :
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