Publication | Closed Access
Suppression of nonlinear frequency sweep in an optical frequency-domain reflectometer by use of Hilbert transformation
202
Citations
5
References
2005
Year
PhotonicsNonlinear Optical FrequencyConventional OfdrEngineeringWave OpticOptical PropertiesNon-linear OpticOptical TestingInterferometryOptical Frequency-domain ReflectometerOptical Information ProcessingNonlinear Frequency SweepCompensation TechniqueOptical SystemsOptical System AnalysisHilbert Transformation
A compensation technique for reducing the effect of nonlinear optical frequency swept in an optical frequency-domain reflectometer (OFDR) is proposed. The instantaneous sweep optical frequency of an OFDR laser source is directly obtained by analysis of the interference signal from an auxiliary interferometer with a Hilbert transformation. Beating OFDR data from a main interferometer are regenerated with respect to the measured instantaneous optical frequency. We show that this technique dramatically improves the spatial resolution of a conventional OFDR and can be applied to an optical frequency-domain medical imaging system to eliminate the problem of a nonlinear frequency sweep effect.
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