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Applied Optics

Applied Optics


  • Vol. 25, Iss. 21 — Nov. 1, 1986
  • pp: 3885–3888

Clipped correlation functions of aperture integrated laser speckle

Richard Barakat  »View Author Affiliations

Applied Optics, Vol. 25, Issue 21, pp. 3885-3888 (1986)

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The doubly and singly clipped correlation functions of aperture integrated laser speckle are evaluated and compared.

© 1986 Optical Society of America

Original Manuscript: May 16, 1986
Published: November 1, 1986

Richard Barakat, "Clipped correlation functions of aperture integrated laser speckle," Appl. Opt. 25, 3885-3888 (1986)

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  1. R. Barakat, J. Blake, “Second-Order Statistics of Speckle Patterns Observed through Finite-Size Scanning Apertures,” J. Opt. Soc. Am. 68, 614 (1978). [CrossRef]
  2. H. Pedersen, “Theory of Speckle-Correlation Measurements Using Nonlinear Detectors,” J. Opt. Soc. Am. A 1, 850 (1985). [CrossRef]
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  6. J. Marron, G. M. Morris, “Correlation Properties of Clipped Laser Speckle,” J. Opt. Soc. Am A 2, 1403 (1985). [CrossRef]
  7. J. Marron, G. M. Morris, “Correlation Measurements Using Clipped Laser Speckle,” Appl. Opt. 25, 789 (1986). [CrossRef] [PubMed]
  8. R. Barakat, “Second Order Statistics of Integrated Intensities and of Detected Photoelectrons,” Opt. Acta (accepted for publication).
  9. M. Lawrentjew, B. Schabat, Methoden der komplexen funktionen theorie (Deutscher Verlag, Berlin, 1967).
  10. W. Magnus, F. Oberhettinger, R. P. Soni, Formulas and Theorems for the Special Functions of Mathematical Physics (Springer Verlag, New York, 1966), pp. 337–342.
  11. R. Barakat, J. Blake, “Theory of Photoelectron Counting Statistics: an Essay,” Phys. Rep. 60, 225 (1980). [CrossRef]
  12. G. Szego, Orthogonal Polynomials (American Mathematical Society, Providence, RI, 1939). Chapt. 3.

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