研究生: |
廖鴻嘉 |
---|---|
論文名稱: |
全像透鏡應用於聯合轉換相關器之設計及研究 |
指導教授: | 謝美莉 |
學位類別: |
碩士 Master |
系所名稱: |
光電工程研究所 Graduate Institute of Electro-Optical Engineering |
論文出版年: | 2009 |
畢業學年度: | 97 |
語文別: | 中文 |
論文頁數: | 60 |
中文關鍵詞: | 全像透鏡 、聯合轉換相關器 |
論文種類: | 學術論文 |
相關次數: | 點閱:269 下載:10 |
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本論文利用全像蝕刻技術(Holographic Lithographic technique)來設計並製作具傅立葉轉換的全像透鏡,並應用於聯合轉換相關器(Joint Transform Correlator) 中,以進行圖形辨別。首先我們將介紹聯合轉換相關器及全像透鏡的理論設計與模擬分析,以及全像蝕刻技術,接下來再製作全像透鏡並探討其光學特性,最後再將全像透鏡結合於聯合轉換相關器,並針對其系統效能及辨識能力進行探討。在本文中我們製作出焦距為13.4公分,光點大小為20μm的離軸全像透鏡,應用此透鏡於聯合轉換相關器中,並展示此系統的圖形辨識效能。
We design and fabricate the holographic lens with Fourier transform function by using the holographic lithographic technique, and we compact the joint transform correlator (JTC) with the holographic lens. First, the optical properties of the holographic lens and JTC system are presented and analyzed in theoretical with computer simulation. The holographic lithographic system has been setup for fabricating the holographic lens and the optical characteristics of the holographic lens have been measured. Finally, the experimental results of the compact joint transform correlator with the holographic lens have been demonstrated and discussed.
[1] D. Gabor. “A new microscope principle”, Nature, 161:777 (1948).
[2] Y. Amitai, A. A. Friesem, and V. Weiss, “Designing holographic lenses with different recording and readout wavelengths”, J. Opt. Soc. Am. A, 7(1), 80-86 (1990).
[3] F. R. Moya-Cessa, F. M. Santoyo, A. Morales, and J. R. Tyrer, “Computer holographic lens”, Appl. Opt., 34(19), 3607-3609 (1995).
[4] J. N. Mait, “Understanding diffractive optic design in the scalar domain”, J. Opt. Soc. Am. A, 12(10), 2145-2158 (1995).
[5] S. Reinhorn, Y. Amitai, and A. A. Friesem, “ Computer-Originated Planar Holographic Optical Elements,” Appl. Opt., 37(14), 3031-3037 (1998).
[6] J. A. Jordan, P. M. Hirsch, L. B. Lesem, and D. L. Van Rooy, “kinoform lenses”, Appl. Opt., 9(8), 1883-1887 (1970).
[7] C. S. Weaver and J. W. Goodman “ A technique for optically convolving two functions” Appl. Opt. 5(7) , 1248-1249(1966).
[8] J. W. Goodman, Introduction to Fourier Optics, 3rd ed., Chap 7, McGraw Hill (2005).
[9] 胡世澤,”電腦全像透鏡於聯合轉換相關器之應用研究”,國立台灣師範大學,碩士論文,民國九十五年。
[10] E. Carcolé, J. Campos, I. Juvells, and S. Bosch, “Diffraction efficiency of low-resolution Fresnel encoded lenses”, Appl. Opt., 33(29), 6741-6746 (1994).
[11] M. R. Latta, and R. V. Pole, “Design techniques for forming 488-nm holographic lens with reconstruction at 633nm”, Appl. Opt., 18(14), 2418-2421 (1979).
[12] Hsuan Chen, Robert R. Hershey, and Emmett N. Leith, “Design for a holographic lens for the infrared”, Appl. Opt., 26(10), 1983-1988 (1987)