Abstract

Light wave diffraction from multiple superposed volume gratings is inestigated using a perturbative iteration method of the integral equation of Maxwell's wave equation. The host material and index gratings are anisotropic and non-coplanar multiple volume gratings are considered. In this method, the paraxial approximation and lack of backward scattering in conventional coupled mode theory are not assumed. Systematic analysis of anisotropic wave diffraction due to multiple noncoplanar volume index gratings is performed in increasing level of diffraction orders corresponding to successive iterations.

© 1997 Optical Society of Korea

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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
  8. S.K.Jin and H.Lee, Opt. & Quant. Electronics, 27, 503 (1995)
    [CrossRef]
  9. H.Lee, Opt.Lett. 13, 874 (1988)
    [CrossRef]
  10. H.Lee, X.G.Gu, and D.Psaltis, J.AppI.Phys.65, 2191 (1989)
    [CrossRef]
  11. J.F.Heanue, M.C.Bashaw, and L.Hesselink, Sci-ence,265, 749 (1994)
    [CrossRef]
  12. A.Yariv and P.Yeh, "Optical waves in crystals", (John Wiley & Sons, New York, 1984) pp. 69-100

1995 (1)

S.K.Jin and H.Lee, Opt. & Quant. Electronics, 27, 503 (1995)
[CrossRef]

1994 (3)

K.T.Tu and T.Tamir, J.Opt.Soc.Am , All, 181 (1994)
[CrossRef]

S.K.Jin, "Multiple light diffraction analysis in volume hologram and new interconnection scheme using irreg-ular patterns", (Ph.D. Thesis, Seoul National Univer-sity, 1994)

J.F.Heanue, M.C.Bashaw, and L.Hesselink, Sci-ence,265, 749 (1994)
[CrossRef]

1993 (1)

H.Lee and S.K.Jin, Appl..Phys.Lett.62, 2191 (1993)
[CrossRef]

1990 (1)

K.Y.Tu, T.Tamir, and H.Lee, J.Opt.Soc.Am. A 7, 1421 (1990)
[CrossRef]

1989 (2)

E.N.Glytsis and T.K.Gaylord, Appl. Opt. 28, 2401 (1989)
[CrossRef]

H.Lee, X.G.Gu, and D.Psaltis, J.AppI.Phys.65, 2191 (1989)
[CrossRef]

1988 (1)

1984 (1)

A.Yariv and P.Yeh, "Optical waves in crystals", (John Wiley & Sons, New York, 1984) pp. 69-100

1975 (1)

S.K.Case, J.Opt.Soc.Am.65, 724 (1975)
[CrossRef]

1968 (1)

H.Kogelink, Bell Syst. Tech. J. 48, 2909 (1968)

Appl. Phys. Lett. (1)

H.Lee and S.K.Jin, Appl..Phys.Lett.62, 2191 (1993)
[CrossRef]

Applied Optics (1)

E.N.Glytsis and T.K.Gaylord, Appl. Opt. 28, 2401 (1989)
[CrossRef]

Bell Syst. Tech. J. (1)

H.Kogelink, Bell Syst. Tech. J. 48, 2909 (1968)

J. Appl. Phys. (1)

H.Lee, X.G.Gu, and D.Psaltis, J.AppI.Phys.65, 2191 (1989)
[CrossRef]

JOSA (2)

S.K.Case, J.Opt.Soc.Am.65, 724 (1975)
[CrossRef]

K.T.Tu and T.Tamir, J.Opt.Soc.Am , All, 181 (1994)
[CrossRef]

JOSA A (1)

K.Y.Tu, T.Tamir, and H.Lee, J.Opt.Soc.Am. A 7, 1421 (1990)
[CrossRef]

Opt. Lett. (1)

Optical and Quantum Electronics (1)

S.K.Jin and H.Lee, Opt. & Quant. Electronics, 27, 503 (1995)
[CrossRef]

Science (1)

J.F.Heanue, M.C.Bashaw, and L.Hesselink, Sci-ence,265, 749 (1994)
[CrossRef]

Other (2)

A.Yariv and P.Yeh, "Optical waves in crystals", (John Wiley & Sons, New York, 1984) pp. 69-100

S.K.Jin, "Multiple light diffraction analysis in volume hologram and new interconnection scheme using irreg-ular patterns", (Ph.D. Thesis, Seoul National Univer-sity, 1994)

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