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In the paper, a holographic storage experiment on laser optically induced light diffraction in acrylamide photopolymer thin film is reported, in which the semiconductor laser of 532nm is used as writing and reading light source, and fuchsin basic is used as sensibilizer. The appearance of diffraction rings can readily be explained as being holographic interference fringes formed by the original laser beam and light scattered from internal or surface inhomogeneities in the unexposed photopolymer. According to phase match condition of degenerate four-wave mixing theory, the diffraction cones of double laser beam holographic writing and single laser beam radiative reading are explained separately. The relationship between angle of incidence and diffraction cone angle is deeply studied by using holographic scattering theory with the help of trigonometric functions.
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Keywords:
- holography /
- photopolymer /
- diffraction cones /
- fuchsin basic
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[2] Forshaw M 1973 Opt. Commun. 8 201
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[8] Liang J, Zeng L Z 2002 Acta Phys. Sin. 51 2369(in Chinese) [梁 洁、曾令祉 2002 51 2369]
[9] Jiang Y Y, Zhou Z X, Li Y, Sun X D, Sun W J, Xu K B, Wan Q Y 1996 Acta Opt. Sin. 16 1259 (in Chinese) [姜永远、周忠祥、李 焱、孙秀冬、孙万钧、许克彬、万秋玉 1996 光学学报 16 1259 ] 〖10] Xu J J, Zhang G Y, Liu S M, Men L Q 1994 Acta Phys. Sin. 43 2059 (in Chinese) [许京军、张光寅、刘思敏、门丽秋 1994 43 2059]
[10] Moran J, Kaminow I 1973 Appl. Opt. 12 1964
[11] Suzuki N, Tomita Y 2007 Appl. Opt. 46 6809
[12] Ye P X, Zhu H N 1985 Physics 14 499(in Chinese) [叶佩弦、朱化南 1985物理 14 499]
[13] Ye P X, Zhu H N 1985 Physics 14 561(in Chinese) [叶佩弦、朱化南 1985物理 14 561]
[14] Mostafa E, Martin F, Romano R, Theo W, Micro I 2001 Appl. Phys. June Part IV
[15] Huang M J, Yao H W, Chen Z Y, Yu D W, Hou L S, Gan F X 2002 Acta Phys. Sin. 51 2536 (in Chinese) [黄明举、姚华文、陈仲裕、余达文、侯立松、干福熹 2002 51 2536]
[16] Huang M J, Wang S L, Wang A R, Gong Q X, Gan F X 2006 Optik 117 231
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[1] Phillips W, Amodei J, Staebler D 1972 RCA Rev. 33 94
[2] Forshaw M 1973 Opt. Commun. 8 201
[3] Forshaw M 1974 Appl. Opt. 13 2
[4] Magnusson R, Gaylord T K 1974 Appl. Opt. 13 1545
[5] Wu Z K, Wang J X, Zhang G Y, Liu S M, Mou C Y, Lv Y B 1987 Acta Phys. Sin. 36 1203 (in Chinese) [吴仲康、王进雄、张光寅、刘思敏、牟崇瀛、吕永彬 1987 36 1203]
[6] Qiu Y S, Liu W H, Lv T S, Chen F Z, Xu L Y 1987 Chin. Jour. Lasers 15 345 (in Chinese) [邱怡申、刘文湖、吕团孙、陈方中、徐良瑛1987中国激光 15 345]
[7] Liu S M, Zhang G Q, Zhang G Y, Xu J J, Liu J M, Men L Q 1995 Acta Phys. Sin. 44 1035(in Chinese) [刘思敏、张国权、张光寅、许京军、刘军民、门丽秋 1995 44 1305]
[8] Liang J, Zeng L Z 2002 Acta Phys. Sin. 51 2369(in Chinese) [梁 洁、曾令祉 2002 51 2369]
[9] Jiang Y Y, Zhou Z X, Li Y, Sun X D, Sun W J, Xu K B, Wan Q Y 1996 Acta Opt. Sin. 16 1259 (in Chinese) [姜永远、周忠祥、李 焱、孙秀冬、孙万钧、许克彬、万秋玉 1996 光学学报 16 1259 ] 〖10] Xu J J, Zhang G Y, Liu S M, Men L Q 1994 Acta Phys. Sin. 43 2059 (in Chinese) [许京军、张光寅、刘思敏、门丽秋 1994 43 2059]
[10] Moran J, Kaminow I 1973 Appl. Opt. 12 1964
[11] Suzuki N, Tomita Y 2007 Appl. Opt. 46 6809
[12] Ye P X, Zhu H N 1985 Physics 14 499(in Chinese) [叶佩弦、朱化南 1985物理 14 499]
[13] Ye P X, Zhu H N 1985 Physics 14 561(in Chinese) [叶佩弦、朱化南 1985物理 14 561]
[14] Mostafa E, Martin F, Romano R, Theo W, Micro I 2001 Appl. Phys. June Part IV
[15] Huang M J, Yao H W, Chen Z Y, Yu D W, Hou L S, Gan F X 2002 Acta Phys. Sin. 51 2536 (in Chinese) [黄明举、姚华文、陈仲裕、余达文、侯立松、干福熹 2002 51 2536]
[16] Huang M J, Wang S L, Wang A R, Gong Q X, Gan F X 2006 Optik 117 231
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