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References

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  1. A. Consortini, “Atmospheric Propagation,” in Lasers and Their Applications, A. Sona, Ed. (Gordon & Breach, New York, 1976), pp.323–348.
  2. M. Bertolotti, “Effects of Atmosphere on the Propagation of Laser Beams,” in Lasers and their Applications, A. Sona, Ed. (Gordon & Breach, New York, 1976), pp. 349–414.
  3. J. C. Dainty, Laser Speckle and Related Phenomena (Springer-Verlag, Heidelberg, 1975).
  4. Y. Fainman, J. Shamir, E. Lenz, “Static and Dynamic Behavior of Speckle Patterns Described by Operator Algebra,” Appl. Opt. 20, 3526 (1981).
    [CrossRef] [PubMed]
  5. H. J. Caulfield, T. Hirschfield, “Optical Communication at the Source Bandwidth Limit,” Appl. Opt. 16, (1977).
    [CrossRef] [PubMed]

1981 (1)

1977 (1)

H. J. Caulfield, T. Hirschfield, “Optical Communication at the Source Bandwidth Limit,” Appl. Opt. 16, (1977).
[CrossRef] [PubMed]

Bertolotti, M.

M. Bertolotti, “Effects of Atmosphere on the Propagation of Laser Beams,” in Lasers and their Applications, A. Sona, Ed. (Gordon & Breach, New York, 1976), pp. 349–414.

Caulfield, H. J.

H. J. Caulfield, T. Hirschfield, “Optical Communication at the Source Bandwidth Limit,” Appl. Opt. 16, (1977).
[CrossRef] [PubMed]

Consortini, A.

A. Consortini, “Atmospheric Propagation,” in Lasers and Their Applications, A. Sona, Ed. (Gordon & Breach, New York, 1976), pp.323–348.

Dainty, J. C.

J. C. Dainty, Laser Speckle and Related Phenomena (Springer-Verlag, Heidelberg, 1975).

Fainman, Y.

Hirschfield, T.

H. J. Caulfield, T. Hirschfield, “Optical Communication at the Source Bandwidth Limit,” Appl. Opt. 16, (1977).
[CrossRef] [PubMed]

Lenz, E.

Shamir, J.

Appl. Opt. (2)

Other (3)

A. Consortini, “Atmospheric Propagation,” in Lasers and Their Applications, A. Sona, Ed. (Gordon & Breach, New York, 1976), pp.323–348.

M. Bertolotti, “Effects of Atmosphere on the Propagation of Laser Beams,” in Lasers and their Applications, A. Sona, Ed. (Gordon & Breach, New York, 1976), pp. 349–414.

J. C. Dainty, Laser Speckle and Related Phenomena (Springer-Verlag, Heidelberg, 1975).

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Equations (17)

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S = λ R P ,
D < A .
D < S A ,
= D / S 1 .
P ( ƒ = 0 ) + P ( ƒ = 1 ) = 1 2 ( 1 ) 2 .
P 1 ( 0 ) = P ( 0 ) = 1 2 ( 1 ) 2 .
P N ( 0 ) = [ P ( 0 ) ] N = ( 1 2 ) N ( 1 ) 2 N .
P N ( 0 ) ( 1 2 ( ( 1 2 N ) .
P 5 ( 0 ) = ( 1 2 ) 5 ( 1 0 . 1 ) = 0 . 028 ,
P 1 ( 0 ) = ( 1 2 ) ( 1 0 . 01 ) 2 0 . 50 .
OPD A 2 / 2 R .
B B 0 = c OPD ,
x = S 1 S 2 S 2 S 1 ,
S 2 = ( λ 1 / λ 2 ) S 1
X S 1 = ( λ 1 / λ 2 ( λ 1 / λ 2 ) 1 = λ 1 λ 1 λ 2 .
x S 1 = 3 .
x S 1 = 1 .

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