跳到主要內容

簡易檢索 / 詳目顯示

研究生: 鍾文杰
Wen-Chieh Chung
論文名稱: 體積全像空間濾波器應用於3D物體旋轉方位之量測
指導教授: 孫慶成
Ching-Cherng Sun
口試委員:
學位類別: 碩士
Master
系所名稱: 理學院 - 光電科學與工程學系
Department of Optics and Photonics
畢業學年度: 93
語文別: 中文
論文頁數: 88
中文關鍵詞: 體積全像亂相編碼空間濾波器
相關次數: 點閱:9下載:0
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • 在本文中,我們首先探討毛玻璃亂相編碼對於體積全像波長選擇性的影響。我們運用相位疊加法,分析毛玻璃表面上因高低起伏所造成之亂相分佈對體積全像之波長選擇性的影響,以應用於體積全像具有亂相多工和波長多工之光學儲存。
    其次我們探討體積全像空間濾波器應用於3D物體方位之量測。我們採用一個三維之毛玻璃球作為量測的物體,以相位疊加法為計算模型,分析毛玻璃球以x、y和z軸為旋轉軸下之旋轉角度選擇性,並探討各項幾何參數對旋轉角度選擇性的影響。


    None

    摘要 Ⅰ 目錄 Ⅱ 圖索引 Ⅳ 表索引 Ⅶ 第一章 緒論 1 1-1 全像光學的發展 1 1-2 論文大綱與安排 2 第二章 體積全像之繞射效率 4 2-1 全像術 4 2-2 布拉格條件 6 2-3 耦合理論 9 2-3-1 布拉格匹配 13 2-3-2 布拉格不匹配 15 2-4相位疊加法 20 第三章 毛玻璃亂相編碼用於體積全像多工儲存之波長選擇性 28 3-1 前言 28 3-2 體積全像的波長選擇性 29 3-3 系統幾何架構與理論分析 30 3-4 毛玻璃對體積全像之波長選擇性的影響 37 3-4-1 取樣點數探討 37 3-4-2 晶體沿繞射光方向的厚度對波長選擇性的影響 40 3-4-3 毛玻璃照射區域對波長選擇性的關係 41 3-4-4 深度調制因子對波長選擇性的影響 42 3-4-5 縮小參考光和物光之夾角 45 3-5 應用方面 48 3-6 結論 49 第四章 體積全像空間濾波器應用於3D物體轉動方位之量測 50 4-1 體積全像濾波器 50 4-2 理論架構 50 4-3 理論分析 52 4-4 模擬分析之討論 4-4-1 毛玻璃球旋轉方式之討論 56 56 4-4-2 取樣方式探討 58 4-4-3 晶體介面成像問題探討 60 4-5 模擬分析結果 63 4-5-1 毛玻璃球之旋轉軸為x軸 63 4-5-2 毛玻璃球之旋轉軸為y軸 66 4-5-3 毛玻璃球之旋轉軸為z軸 69 4-5-4 結果分析與比較 69 4-6 實驗結果 71 4-6-1 實驗架構 71 4-6-2 實驗細節討論 71 4-6-3 實驗數據及討論 76 4-7 應用方面 78 4-8 結論 79 第五章 結論 80 參考資料 82 中英文名詞對照表 85

    [1] D. Gabor, “A new Microscopic principle” Nature 161, 777 (1948).
    [2] H. J. Coufal, D. Psaltis, and G. T. Sincerbox, Holographic Data Storage (Spring-Verlag Berlin Heidelberg 2000).
    [3] F. H. Mok, M. C. Tackitt, and H. M. Stoll, “Storage of 500 High-resolution holograms in LiNbO3 Crystal,” Opt. Lett. 16, 605-607(1991).
    [4] G. A. Rakuljic, V. Leyva, and A. Yariv, “Optical data storage by using orthogonal wavelength-multiplexed volume holograms,” Opt. Lett. 17, 1470-1473(1992).
    [5] G. Barbastathis, M. Levene, and D. Psaltis, “Shift multiplexing with spherical reference waves,” Appl. Opt. 35, 2403-2417(1996).
    [6] D. psaltis, M. Levene, A. Pu, G. Barbastathis, and K. Curtis, “Holographic storage using shift multiplexing,” Opt. Lett. 20, 782-784(1995).
    [7] C. C. Sun, R. H. Tsou, W. Chang, J. Y. Chang, and M. W. Chang, “Random phase-coded multiplexing of hologram volumes using ground glass,” Opt. Quantum Electron. 28, 1551-1561(1996).
    [8] C. C. Sun, “Simplified model for diffraction analysis of volume holograms,” Opt. Eng. 42, 1184-1185(2003).
    [9] W. R. Klein, “Theoretical efficiency of Bragg devices,” Proc. IEEE 54, 803(1966).
    [10] P. Yeh, Introduction to photorefractive nonlinear optics, (John Wiley, New York 1988).
    [11] J. W. Goodman, Introduction to Fourier optics, (McGraw-Hill New York 2002 )
    [12] Y. L. Korzinin and and V. I. Sukhanov, “Light diffraction by 3-D holograms with a continuous spectrum of spatial frequency.System of equations for coupled waves,” Opt. Spectrosc.(USSR) 56, 467-469(1985).
    [13] C. Gu, “Application of Weak Diffraction Theory in Volume Holographic Data Storage,” Opt. Mem. Neural Networks 10, 35-48(2001).
    [14] C. C. Sun and W. C. Su, “Three-dimensional shifting selectivity of random phase encoding in volume holograms,” Appl. Opt. 40, 1253-1260(2001).
    [15] W. C. Su and C. C. Sun, “Optical pattern interconnections using random phase encoding in volume holograms,” Opt. Commun. 213, 259-265(2002).
    [16] C. C. Sun, W. C. Su, B. Wang, and E. T. Chiou, “Lateral shifting sensitivity of a ground glass for holographic encryption and multiplexing using phase conjugate readout algorithm,” Opt. Commun. 191, 209-224(2001).
    [17] C. C. Sun, W. C. Su, B. Wang, and Y. OuYang, “Diffraction selectivity of holograms with random phase encoding,” Opt. Commun. 175, 67-74(2000).
    [18] 蘇威佳,三維亂相編碼之體積全像及其應用,國立中央大學光電所博士論文,中華民國九十年。
    [19] R. K. Wang, I. A. Watson, and C. Chatwin “Random phase encodihg for optical security,” Opt. Eng. 35, 2464-2469(1998).
    [20] S. Lai “Security holograms using an encoded reference wave,” Opt. Eng. 35, 2470-2472(1996).
    [21] P. Refregier and B. Javidi, “Optical image encryption based on input plane and Fourier plane random encoding,” Opt. Lett. 20, 767-769(1995).
    [22] B. Javidi and E. Ahouzi, “Optical security system with Fourier plane encoding,” Appl. Opt. 37, 6247-6255(1998).
    [23] W. C. Su, C. C. Sun, Y. C. Chen, and Y. Ouyang, “Duplication of phase key for random-phase-encrypted volume holograms,” Appl. Opt. 43, 1728-1733(2004).
    [24] J. H. Fang, Y. H. Kang, abd H. Lee, “Effect of an irregular pattern on wavelength selectivity in a volume hologram,” Opt. Lett. 20, 2426-2428(1995).
    [25] M. C. Bashaw, R. C. Singer, J. F. Heanue, and L. Hesselink, “Coded-wavelength multiplex volume holography, ” Opt. Lett. 20, 1916-1918(1995).
    [26] K. H. Kim, H. S. Lee, and B. Lee, “Enhancement of the wavelength selectivity of a volume hologram by use of multimode optical fiber referencing,” Opt. Lett. 23, 1224-1225(1998).
    [27] C. C. Sun, C. Y. Hsu, W. C. Su, Y. Ouyang, and J. Y. Chang, “A novel algorithm for high sensitivity in measuring surface variation based on volume holography,” Micro. Opt. Tech. Lett. 34, 319-321(2002).
    [28] C. C. Sun, Y. Ouyang, W. C. Su, and E. T. Chiou, “All-optical angular sensing based on holography multiplexing with spherical waves,” Opt. Lett. 41, 2809-2813(2002).
    [29] B. Javidi and E. Tajahuerce, “Three-dimensinal object recognition by use of digital holography,” Opt. Eng. 25, 610-612(2000).
    [30] S. H. Shin and B. Javidi, “Three-dimensional object recognition by use of a photorefractive processor,” Opt. Lett. 26, 1161-1163(2001).
    [31] C. C. Sun, C. Y. Hsu, C. H. Wu, and W. C. Su, “Spatial filtering of three-dimensional objects based on volume holography,” Opt. Eng. 42, 2788-2789(2003).
    [32] V. N. Mahajan, Optical imaging and aberrations,(SPIE PRESS Bellingham, Washington 1998)
    [33] 葉世博,高位移敏感度之全像多工光學儲存之研究,國立中央大學光電所碩士論文,中華民國八十九年。
    [34] 林祐年,體積光柵應用於微物3D掃描之研究,國立中央大學光電所碩士論文,中華民國八十九年。
    [35] C. C. Sun, Y. M. Chen, and W. C. Su, “All-optical fiber sensing system based on random phase encoding and volume holographic interconnection,” Opt. Eng. 40, 160-161(2001).

    QR CODE
    :::