Applied Optics · 1977 · 32 citations · 2 references
Temporal HolographyHolographyEngineeringWave OpticOptical TestingOptical MetrologyWhite LightHolographic MethodTemporal Fourier HologramOptical PhysicsDigital HolographyTime VariablesOptical PropertiesRecent Experimental AspectsOptical SystemsTime-of-flight ImagingPhotonicsPhysicsTime MetrologyGeometrical OpticApplied PhysicsOptical Sciences
Assuming some parallelism between space and time variables, namely, in the frequency domain, that occurs in the description of optical signals as functions of space or/and space and time, the Abbe theory applies to temporal distributions. The concept of temporal response of any optical system, space invariant, working at the time frequency nu = c/lambda, is then brought out. A method of temporal encoding of optical information is also reported, leading to a consideration of the output of spectroscopic devices as a Temporal Fourier Hologram (TFH). This applies to metrology (interferometry in white light, surface testing, roughness measurements) and image processing by temporal holography. Holograms of extended self-luminous objects have been recorded in white light, and reconstructed images are presented.
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