Publication | Closed Access
Continuous-wave terahertz phase imaging using a far-infrared laser interferometer
33
Citations
26
References
2011
Year
Thz PhotonicsEngineeringMicroscopyInterferometryContinuous-wave Terahertz PhaseOptical CharacterizationTerahertz PhotonicsTerahertz PhysicsOptical PropertiesTerahertz PhasePhase DistributionComputational ImagingTerahertz Interferometric ImagingRadiologyTerahertz SpectroscopyTerahertz SciencePhase RetrievalSpectroscopyApplied PhysicsTerahertz TechniqueQuantitative Phase Imaging
Terahertz phase imaging can reveal the depth information of an optically opaque object and provide much better contrast for weak-absorption materials. We demonstrate a continuous-wave terahertz interferometric imaging method in which a far-infrared laser interferometer is used to measure the phase distribution with diffraction-limited lateral resolution and subwavelength axial resolution. An improved four-step phase-shifting algorithm is introduced to retrieve the phase map with very high accuracy and low distortion. The relative depth profiles of two transparent samples are successfully extracted by using this method. Experimental results verify that terahertz interferometric imaging in combination with the phase-shifting technique enables effective reconstruction of the phase image of the object under test.
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