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References

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  1. G. O. Reynolds, J. B. DeVelis, IEEE Trans. AP-15, 41 (1967).
    [Crossref]
  2. A. D. Jacobson, F. J. McClung, Appl. Opt. 4, 1509 (1965).
    [Crossref]
  3. A. A. Friesem, A. Kozma, G. F. Adams, Appl. Opt. 6, 851 (1967).
    [Crossref] [PubMed]
  4. K. A. Stetson, R. L. Powell, J. Opt. Soc. Am. 56, 1161 (1966).
    [Crossref]
  5. E. F. Erickson, R. M. Brown, J. Opt. Soc. Am. 57, 367 (1967).
    [Crossref]
  6. M. Born, E. Wolf, Principal of Optics (Pergamon Press, Inc., New York, 1965), 2nd ed., p. 320.
  7. J. W. Foreman, Appl. Opt. 6, 821 (1967).
    [Crossref] [PubMed]
  8. H. Kogelnik, Bell System Tech. J. 43, 334 (1964).
  9. B. P. Hildebrand, Rept. No. 7421–35–T, Willow Run Laboratories, Institute of Science and Technology, The University of Michigan, Ann Arbor, Michigan (August1967).

1967 (4)

1966 (1)

1965 (1)

1964 (1)

H. Kogelnik, Bell System Tech. J. 43, 334 (1964).

Adams, G. F.

Born, M.

M. Born, E. Wolf, Principal of Optics (Pergamon Press, Inc., New York, 1965), 2nd ed., p. 320.

Brown, R. M.

DeVelis, J. B.

G. O. Reynolds, J. B. DeVelis, IEEE Trans. AP-15, 41 (1967).
[Crossref]

Erickson, E. F.

Foreman, J. W.

Friesem, A. A.

Hildebrand, B. P.

B. P. Hildebrand, Rept. No. 7421–35–T, Willow Run Laboratories, Institute of Science and Technology, The University of Michigan, Ann Arbor, Michigan (August1967).

Jacobson, A. D.

Kogelnik, H.

H. Kogelnik, Bell System Tech. J. 43, 334 (1964).

Kozma, A.

McClung, F. J.

Powell, R. L.

Reynolds, G. O.

G. O. Reynolds, J. B. DeVelis, IEEE Trans. AP-15, 41 (1967).
[Crossref]

Stetson, K. A.

Wolf, E.

M. Born, E. Wolf, Principal of Optics (Pergamon Press, Inc., New York, 1965), 2nd ed., p. 320.

Appl. Opt. (3)

Bell System Tech. J. (1)

H. Kogelnik, Bell System Tech. J. 43, 334 (1964).

IEEE Trans. (1)

G. O. Reynolds, J. B. DeVelis, IEEE Trans. AP-15, 41 (1967).
[Crossref]

J. Opt. Soc. Am. (2)

Other (2)

M. Born, E. Wolf, Principal of Optics (Pergamon Press, Inc., New York, 1965), 2nd ed., p. 320.

B. P. Hildebrand, Rept. No. 7421–35–T, Willow Run Laboratories, Institute of Science and Technology, The University of Michigan, Ann Arbor, Michigan (August1967).

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Figures (3)

Fig. 1
Fig. 1

Intensity spectrum of He–Ne laser (6328 Å), 210 MHz/div.

Fig. 2
Fig. 2

Visibility of V in % or brightness B in % as a function of the path length difference. Triangled points are experimental visibility values and circled points are experimental brightness values.

Fig. 3
Fig. 3

(a) Object for hologram; (b) reconstructed object for hologram.

Equations (3)

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V ( l ) = ( I max - I min ) / ( I max + I min ) ,
B ( l ) = V 2 ( l ) .
V 2 ( l ) = B ( l ) = ( n = 1 N I n cos Δ k n l ) 2 + ( n = 1 N I n sin D k n l ) 2 ( n = 1 N I n ) 2 ,

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