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October 1, 1962Journal of the Optical Society of America1,646 citations

Reconstructed Wavefronts and Communication Theory*

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ELEmmett N. LeithJUJuris Upatnieks

Key Points

  • The aim is to explore the image reconstruction process in holography through the lens of communication theory.
  • Describes the two-step imaging process of holography as per Gabor's discovery.
  • Identifies and analyzes three key operations: modulation, frequency dispersion, and square-law detection.
  • Discusses techniques to enhance the signal-to-noise ratio during reconstruction.
  • Reconstruction typically achieves a signal-to-noise ratio of unity.
  • Proposed techniques successfully correct for shortcomings in the standard reconstruction process.
  • Introduces the concept of generalized holograms beyond traditional Fresnel diffraction patterns.

Abstract

A two-step imaging process discovered by Gabor involves photographing the Fresnel diffraction pattern of an object and using this recorded pattern, called a hologram, to construct an image of this object. Here, the process is described from a communication-theory viewpoint. It is shown that construction of the hologram constitutes a sequence of three well-known operations: a modulation, a frequency dispersion, and a square-law detection. In the reconstruction process, the inverse-frequency-dispersion operation is carried out. The process as normally carried out results in a reconstruction in which the signal-to-noise ratio is unity. Techniques which correct this shortcoming are described and experimentally tested. Generalized holograms are discussed, in which the hologram is other than a Fresnel diffraction pattern.

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Cite This Study

Leith et al. (1962) studied this question.

synapsesocial.com/papers/6a1da4ff9df5fa36af4da21chttps://doi.org/10.1364/josa.52.001123
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