Numerical analysis of a temperature sensor based on the photonic band gap effect in a photonic crystal fiber |
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Authors: | R. Boufenar M. Bouamar A. Hocini |
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Affiliation: | 1. Laboratoire d''Analyse des Signaux et Systemes, Department of Electronics, Mohamed Boudiaf University, M''sila 28000, Algeria;2. Nuclear research center, BP 180 Ain Oussera, Djelfa 17000, Algeria |
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Abstract: | In this paper we investigate, by the plane wave expansion method and an analytical model, the temperature effect on the photonic band gap fiber, and we report on a numerical demonstration of a temperature sensor based on the photonic band gap (PBG) shift in a solid core photonic crystal fiber (PCF) infiltrated with a high refractive index oil. The bandwidth and the position of the central wavelength of the band gap are the parameters of interests for our temperature sensing purpose. Simulation results were found to be in excellent agreement with the refractive index scaling law and the highest sensitivity of 3.21?nm/°C was achieved, and it will be even higher than the grating based sensors written in PCFs with similar structure. |
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Keywords: | Temperature sensor Photonic crystal fiber Photonic band gap Plane wave expansion method |
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