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Experimental analysis of the temperature dependence of the Brillouin gain spectrum in short-length single-mode fiber
Author(s) -
Murat Yücel,
H. Haldun Göktaş,
Murat Yücel,
Nail Ferhat Öztürk,
Abdullah Erkam Gunduz
Publication year - 2017
Publication title -
turkish journal of electrical engineering and computer sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.225
H-Index - 30
eISSN - 1303-6203
pISSN - 1300-0632
DOI - 10.3906/elk-1607-314
Subject(s) - brillouin scattering , brillouin zone , optics , materials science , single mode optical fiber , reflectometry , optical fiber , double clad fiber , fiber , wavelength , dispersion shifted fiber , fiber optic sensor , time domain , optoelectronics , physics , composite material , computer science , computer vision
The Brillouin backscattered wave was examined in a short-length single-mode fiber at different ambient temperatures using a 1553-nm wavelength laser source. To obtain Brillouin scattering depending on the temperature change in a 95-m long single-mode fiber cable, the Brillouin optical time domain reflectometry (BOTDR) technique was used. In this technique, a 1553 nm wavelength signal was sent from one side of the test fiber. The FC/APC connector was attached to the other end of the test fiber. The temperature parameters of the single-mode fiber cables of different brands and types can be obtained using Brillouin scattering. The Brillouin frequency shift is found 0.93 MHz/◦C. Measured linear change demonstrated its use as the temperature sensor of Brillouin Scattering.

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