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  1. J. M. Bennett, H. E. Bennett, “Polarization,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill), New York, 1978), Sec. 10.
  2. J. A. Dobrowolski, “Coatings and Filters,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill, New York, 1978), Sec. 8.
  3. O. S. Heavens, Optical Properties of Thin Solid Films (Butterworths, London, 1955), p. 239.
  4. Ref. 1, p. 10–100.
  5. Ref. 2, p. 8–74.
  6. W. L. Wolfe, “Properties of Optical Materials,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill, New York, 1978), Sec. 7, p. 7–93.
  7. Ref. 6, p. 7–111.

Bennett, H. E.

J. M. Bennett, H. E. Bennett, “Polarization,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill), New York, 1978), Sec. 10.

Bennett, J. M.

J. M. Bennett, H. E. Bennett, “Polarization,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill), New York, 1978), Sec. 10.

Dobrowolski, J. A.

J. A. Dobrowolski, “Coatings and Filters,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill, New York, 1978), Sec. 8.

Heavens, O. S.

O. S. Heavens, Optical Properties of Thin Solid Films (Butterworths, London, 1955), p. 239.

Wolfe, W. L.

W. L. Wolfe, “Properties of Optical Materials,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill, New York, 1978), Sec. 7, p. 7–93.

Other (7)

J. M. Bennett, H. E. Bennett, “Polarization,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill), New York, 1978), Sec. 10.

J. A. Dobrowolski, “Coatings and Filters,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill, New York, 1978), Sec. 8.

O. S. Heavens, Optical Properties of Thin Solid Films (Butterworths, London, 1955), p. 239.

Ref. 1, p. 10–100.

Ref. 2, p. 8–74.

W. L. Wolfe, “Properties of Optical Materials,” in Handbook of Optics, W. G. Driscoll, W. Vaughan, Eds. (McGraw-Hill, New York, 1978), Sec. 7, p. 7–93.

Ref. 6, p. 7–111.

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Figures (2)

Fig. 1
Fig. 1

Polarizing beam splitter using a coated dielectric slab. A very small s component in the transmitted beam is not indicated.

Fig. 2
Fig. 2

Enhancement factor f(n), Eq. (10), of the s reflectance as a result of interference in an unbacked film of refractive index n. The layer is assumed to be of quarterwave optical thickness at the Brewster angle of incidence, ϕB = tan−1n.

Equations (11)

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a u 2 + b u + c = 0 ,
a = n 1 8 - n 2 4 , b = 2 n 1 2 n 2 4 - n 1 8 ( n 2 2 + 1 ) , c = n 1 4 n 2 2 ( n 1 4 - n 2 2 ) .
d p = ( λ / 4 ) ( n 1 2 - u ) - 1 / 2
R s = [ ( n 1 4 - n 2 2 ) / ( n 1 4 + n 2 2 ) ] 2 .
E R t = T s / T p = ( 1 - R s ) 2 = 6.4 × 10 - 4 .
P t = ( T p - T s ) / ( T p + T s ) = 0.9987 ,
R s = [ ( n 4 - 1 ) / ( n 4 + 1 ) ] 2 .
R ¯ s = [ ( n 2 - 1 ) / ( n 2 + 1 ) ] 2
R s = f ( n ) R ¯ s ,
f ( n ) = ( n 2 + 1 ) 4 / ( n 4 + 1 ) 2 .
R s = n 8 - 2 n 4 + 1 n 8 + 6 n 4 + 1 .

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