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References

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  1. R. Weil, J. Appl. Phys. 41, 3012 (1970).
    [CrossRef]
  2. H. E. Bennett, J. M. Bennett, in Physics of Thin Films, G. Hass, R. E. Thun, Eds. (Academic, New York, 1967), Vol. 4, p. 42.
  3. F. Abeles, in Advanced Optical Techniques, A.C.S. Van Heel, Ed. (Wiley, New York, 1967), pp. 154–157.
  4. J. M. Stone, Radiation and Optics (McGraw-Hill, New York, 1963), Chap. 16.
  5. P. W. Baumeister, in Military Standardization Handbook 141, Optical Design (Defense Supply Agency, Washington D.C., 1962), Chap. 20.
  6. Von G. Koppelman, Ann. Phys. 7, 388 (1960).
    [CrossRef]

1970 (1)

R. Weil, J. Appl. Phys. 41, 3012 (1970).
[CrossRef]

1960 (1)

Von G. Koppelman, Ann. Phys. 7, 388 (1960).
[CrossRef]

Abeles, F.

F. Abeles, in Advanced Optical Techniques, A.C.S. Van Heel, Ed. (Wiley, New York, 1967), pp. 154–157.

Baumeister, P. W.

P. W. Baumeister, in Military Standardization Handbook 141, Optical Design (Defense Supply Agency, Washington D.C., 1962), Chap. 20.

Bennett, H. E.

H. E. Bennett, J. M. Bennett, in Physics of Thin Films, G. Hass, R. E. Thun, Eds. (Academic, New York, 1967), Vol. 4, p. 42.

Bennett, J. M.

H. E. Bennett, J. M. Bennett, in Physics of Thin Films, G. Hass, R. E. Thun, Eds. (Academic, New York, 1967), Vol. 4, p. 42.

Koppelman, Von G.

Von G. Koppelman, Ann. Phys. 7, 388 (1960).
[CrossRef]

Stone, J. M.

J. M. Stone, Radiation and Optics (McGraw-Hill, New York, 1963), Chap. 16.

Weil, R.

R. Weil, J. Appl. Phys. 41, 3012 (1970).
[CrossRef]

Ann. Phys. (1)

Von G. Koppelman, Ann. Phys. 7, 388 (1960).
[CrossRef]

J. Appl. Phys. (1)

R. Weil, J. Appl. Phys. 41, 3012 (1970).
[CrossRef]

Other (4)

H. E. Bennett, J. M. Bennett, in Physics of Thin Films, G. Hass, R. E. Thun, Eds. (Academic, New York, 1967), Vol. 4, p. 42.

F. Abeles, in Advanced Optical Techniques, A.C.S. Van Heel, Ed. (Wiley, New York, 1967), pp. 154–157.

J. M. Stone, Radiation and Optics (McGraw-Hill, New York, 1963), Chap. 16.

P. W. Baumeister, in Military Standardization Handbook 141, Optical Design (Defense Supply Agency, Washington D.C., 1962), Chap. 20.

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Equations (20)

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A = ( 1 - R s ) ( 1 - e - β l ) ( 1 - R s e - β l ) - 1 ,
T R 2 = T 1 m = 0 R 2 m R 1 m exp [ - ( 2 m + 1 ) β l ] ,
T R 2 = T 1 S exp ( - β l ) ,
S = [ 1 - R 1 R 2 exp ( - 2 β l ) ] - 1 .
A R = T R 2 exp ( β l ) - T R 2
A L = T L 2 - T L 2 exp ( - β l ) .
T = T 1 T 2 S exp ( - β l ) ,
A b = T 1 S [ 1 - exp ( - β l ) ] [ 1 + R 2 exp ( - β l ) ] .
R = R 1 + R 2 T 1 2 S exp ( - 2 β l ) .
A s 1 = A 1 + A 1 T 1 R 2 S exp ( - 2 β l )
A s 2 = A 2 T 1 S exp ( - β l ) .
A = A b + A s 1 + A s 2 .
T = [ T 1 T 2 / ( 1 - R 1 R 2 ) ]
A = β l { 1 + [ ( R 2 - R 1 ) / ( 1 - R 1 R 2 ) ] } + A 1 { 1 + [ R 2 ( 1 - R 1 ) / ( 1 - R 1 R 2 ) ] } + A 2 { [ ( 1 - R 1 ) / ( 1 - R 1 R 2 ) ] } ,
A = β l + A 1 { 1 + [ R s / ( 1 + R s ) ] } + A 2 [ 1 / ( 1 + R s ) ] ,
R s = 1 2 [ ( A c s - A u s ) / ( A u s - A 0 ) ] .
A = β l + 2 A s ,
A c = 2 n 0 n 1 n 1 2 + n s 2 ( n 0 + n s ) 2 cos 2 δ + [ n 1 + ( n 0 n s / n 1 ) ] 2 sin 2 δ β t ,
A c = n 0 λ β / ( n H 2 - n L 2 ) .
A c = a 1 β 1 + a 2 β 2 + + a N β N ,

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