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Simultaneous temperature and strain measurement with combined spontaneous Raman and Brillouin scattering
126
Citations
11
References
2005
Year
EngineeringCombined Spontaneous RamanAnti-stokes Raman SignalOptical PropertiesSpontaneous RamanInstrumentationOptical SpectroscopyMaterials SciencePhysicsFiber Optic SensingSimultaneous TemperatureBrillouin ScatteringFiber OpticPhotoelasticityNatural SciencesSpectroscopyApplied PhysicsPhononSpectroscopic MethodRaman Signal
We report on a novel method for simultaneous distributed measurement of temperature and strain based on spatially resolving both spontaneous Raman and Brillouin backscattered anti-Stokes signals. The magnitude of the intensity of the anti-Stokes Raman signal permits the determination of the temperature. The Brillouin frequency shift is dependent on both the temperature and the strain of the fiber; once the temperature has been determined from the Raman signal, the strain can then be computed from the frequency measurement of the Brillouin signal.
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