Abstract

This paper discusses the possibility of forming coatings when two different dielectrics are evaporated simultaneously, with the thickness and refractive index constant along the radial coordinate. An analysis is given of the thickness and refractive-index distribution of the coating formed when two film-forming materials are simultaneously evaporated from sources lying at identical distances from the substrate’s axis of rotation.

© 2013 Optical Society of America

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  1. L. A.  Gubanova, É. S.  Putilin, “Interference filters that form the phase and amplitude characteristics of reflected and transmitted radiation,” Opt. Zh. 62, No. 8, 72 (1995) [J. Opt. Technol. 62, 557 (1995)].
  2. L. A.  Gubanova, É. S.  Putilin, S. F.  Starovoĭtov, “Effect of oxide impurities on the absorption of metallic films,” Opt. Zh. 56, No. 3, 19 (1991) [J. Opt. Technol. 56, 136 (1991)].
  3. R.  Jacobson, “Inhomogeneous and jointly deposited homogeneous films for optical applications,” in The Physics of Thin Films: Advances in Research and Development, G.  Hass, M. H.  Francombe, R. W.  Hoffman, eds. (Academic, New York, 1976; Mir, Moscow, 1978), pp. 61–66.
  4. K.  Robbie, Y.  Cui, C.  Elliott, K.  Kaminska, “Oxidation of evaporated porous silicon rugate filters,” Appl. Opt. 45, 8298 (2006).
    [CrossRef]
  5. A. G.  Zhiglinskiĭ, É. S.  Putilin, “Optimal conditions for forming homogeneous films,” Opt. Mekh. Prom. No. 9, 27 (1971).

2006

1995

L. A.  Gubanova, É. S.  Putilin, “Interference filters that form the phase and amplitude characteristics of reflected and transmitted radiation,” Opt. Zh. 62, No. 8, 72 (1995) [J. Opt. Technol. 62, 557 (1995)].

1991

L. A.  Gubanova, É. S.  Putilin, S. F.  Starovoĭtov, “Effect of oxide impurities on the absorption of metallic films,” Opt. Zh. 56, No. 3, 19 (1991) [J. Opt. Technol. 56, 136 (1991)].

1971

A. G.  Zhiglinskiĭ, É. S.  Putilin, “Optimal conditions for forming homogeneous films,” Opt. Mekh. Prom. No. 9, 27 (1971).

Cui, Y.

Elliott, C.

Gubanova, L. A.

L. A.  Gubanova, É. S.  Putilin, “Interference filters that form the phase and amplitude characteristics of reflected and transmitted radiation,” Opt. Zh. 62, No. 8, 72 (1995) [J. Opt. Technol. 62, 557 (1995)].

L. A.  Gubanova, É. S.  Putilin, S. F.  Starovoĭtov, “Effect of oxide impurities on the absorption of metallic films,” Opt. Zh. 56, No. 3, 19 (1991) [J. Opt. Technol. 56, 136 (1991)].

Jacobson, R.

R.  Jacobson, “Inhomogeneous and jointly deposited homogeneous films for optical applications,” in The Physics of Thin Films: Advances in Research and Development, G.  Hass, M. H.  Francombe, R. W.  Hoffman, eds. (Academic, New York, 1976; Mir, Moscow, 1978), pp. 61–66.

Kaminska, K.

Putilin, É. S.

L. A.  Gubanova, É. S.  Putilin, “Interference filters that form the phase and amplitude characteristics of reflected and transmitted radiation,” Opt. Zh. 62, No. 8, 72 (1995) [J. Opt. Technol. 62, 557 (1995)].

L. A.  Gubanova, É. S.  Putilin, S. F.  Starovoĭtov, “Effect of oxide impurities on the absorption of metallic films,” Opt. Zh. 56, No. 3, 19 (1991) [J. Opt. Technol. 56, 136 (1991)].

A. G.  Zhiglinskiĭ, É. S.  Putilin, “Optimal conditions for forming homogeneous films,” Opt. Mekh. Prom. No. 9, 27 (1971).

Robbie, K.

Starovoitov, S. F.

L. A.  Gubanova, É. S.  Putilin, S. F.  Starovoĭtov, “Effect of oxide impurities on the absorption of metallic films,” Opt. Zh. 56, No. 3, 19 (1991) [J. Opt. Technol. 56, 136 (1991)].

Zhiglinskii, A. G.

A. G.  Zhiglinskiĭ, É. S.  Putilin, “Optimal conditions for forming homogeneous films,” Opt. Mekh. Prom. No. 9, 27 (1971).

Appl. Opt.

Opt. Mekh. Prom.

A. G.  Zhiglinskiĭ, É. S.  Putilin, “Optimal conditions for forming homogeneous films,” Opt. Mekh. Prom. No. 9, 27 (1971).

Opt. Zh.

L. A.  Gubanova, É. S.  Putilin, “Interference filters that form the phase and amplitude characteristics of reflected and transmitted radiation,” Opt. Zh. 62, No. 8, 72 (1995) [J. Opt. Technol. 62, 557 (1995)].

L. A.  Gubanova, É. S.  Putilin, S. F.  Starovoĭtov, “Effect of oxide impurities on the absorption of metallic films,” Opt. Zh. 56, No. 3, 19 (1991) [J. Opt. Technol. 56, 136 (1991)].

Other

R.  Jacobson, “Inhomogeneous and jointly deposited homogeneous films for optical applications,” in The Physics of Thin Films: Advances in Research and Development, G.  Hass, M. H.  Francombe, R. W.  Hoffman, eds. (Academic, New York, 1976; Mir, Moscow, 1978), pp. 61–66.

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