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References

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  1. J. P. Huignard, F. Micheron, Appl. Phys. Lett. 29, 591 (1976).
    [CrossRef]
  2. J. P. Huignard, J. P. Herriau, Appl. Opt. 16, 180 (1977).
    [CrossRef]
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    [CrossRef] [PubMed]
  4. S. Iwasa, Appl. Opt. 15, 1418 (1976).
    [CrossRef] [PubMed]
  5. D. Casasent, Laser Applications, Vol 3, M. Ross, Ed. (Academic, New York, 1977), pp. 43–105.
  6. J. W. Goodman, Introduction to Fourier Optics (McGraw-Hill, New York, 1968), pp. 141–197.
  7. R. W. Lewis, Appl. Opt. 17, 161 (1978).
    [CrossRef] [PubMed]
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    [CrossRef] [PubMed]

1978 (2)

1977 (2)

1976 (2)

J. P. Huignard, F. Micheron, Appl. Phys. Lett. 29, 591 (1976).
[CrossRef]

S. Iwasa, Appl. Opt. 15, 1418 (1976).
[CrossRef] [PubMed]

Appl. Opt. (5)

Appl. Phys. Lett. (1)

J. P. Huignard, F. Micheron, Appl. Phys. Lett. 29, 591 (1976).
[CrossRef]

Other (2)

D. Casasent, Laser Applications, Vol 3, M. Ross, Ed. (Academic, New York, 1977), pp. 43–105.

J. W. Goodman, Introduction to Fourier Optics (McGraw-Hill, New York, 1968), pp. 141–197.

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Figures (2)

Fig. 1
Fig. 1

Basic experiment for real-time object edge reconstruction with BSO crystals: A high intensity object beam O interferes with a weak off-axis, reference R. Beam ratio R / O 1 10. Permanent-edged image reconstruction by retroreflection of the plane wave reference beam. Crystal size 10 × 10 × 2 mm3.

Fig. 2
Fig. 2

(a) Reconstructed images from different types of input binary transparencies. Beam ratio R/O ≃ 15. (b) Reconstructed edged images. Beam ratio R / O 1 10.

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