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Absolute distance measurement by multi-heterodyne interferometry using an electro-optic triple comb
77
Citations
21
References
2018
Year
Optical MaterialsEngineeringMicroscopyOptical TestingInterferometryOptical MetrologyConsecutive Synthetic WavelengthsFiber OpticsUnknown DistanceOptical PropertiesOptical DiagnosticsPhotonic MetrologyInstrumentationOptical CommunicationOptical SystemsMulti-heterodyne InterferometryPhotonicsPhysicsLength MetrologyTime MetrologyFrequency CombsOptical SensorsElectro-optics DeviceOptoelectronicsElectro-optic Triple CombApplied PhysicsAbsolute Distance MeasurementOptical EngineeringOptical System Analysis
We experimentally demonstrate a method for absolute distance measurement using a triple-comb-based multi-heterodyne interferometer which has the capacity to simultaneously balance the non-ambiguous range, resolution, update rate, and cost. Three flat-top electro-optic combs generated via cascaded intensity and phase modulators are adopted to form a measurement scheme including rough and fine measurements, and the unknown distance is determined by detecting the phase changes of the consecutive synthetic wavelengths. Experimental results demonstrate an agreement within 750 nm over 80 m distance at an update rate of 167 μs.
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