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Brillouin gain spectrum characterization in single-mode optical fibers

Journal of Lightwave Technology · 1997 · Vol. 15(10) · pp. 1842–1851
Marc NiklèsLuc ThévenazPhilippe A. Robert

Abstract

A novel method for Brillouin gain spectrum measurements in optical fibers is presented. It is based on the pump and probe technique with the specificity to use a single laser source together with an external modulator to generate the interacting lightwaves. The high accuracy and inherent stability of the technique makes it suitable for calibration and reference measurements. Different fibers with different refractive index profiles have been tested and characterized. The problem of the evolution of the polarization of the interacting waves is addressed in the article and a polarization insensitive determination of the actual Brillouin gain coefficient is made possible through two successive measurements with different polarizations. The effects of strain and temperature on the Brillouin gain spectrum are also fully characterized.

Advanced Fiber Optic SensorsSemiconductor Lasers and Optical DevicesPhotonic and Optical DevicesBrillouin scatteringOpticsBrillouin zonePolarization (electrochemistry)Single-mode optical fiberOptical fiberMaterials scienceRefractive indexLaserPhysics
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References
A technique to measure distributed strain in optical fibers
IEEE Photonics Technology Letters · 1990 · 252 citations
Limitations on lightwave communications imposed by optical-fiber nonlinearities
Journal of Lightwave Technology · 1990 · 730 citations
Tensile strain dependence of Brillouin frequency shift in silica optical fibers
IEEE Photonics Technology Letters · 1989 · 547 citations
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