高级检索

基于灰度相关的数字全息孔径合成方法

张庆生, 吕晓旭, 余清婷, 刘赣勇

张庆生, 吕晓旭, 余清婷, 刘赣勇. 基于灰度相关的数字全息孔径合成方法[J]. 激光技术, 2009, 33(3): 276-278,282.
引用本文: 张庆生, 吕晓旭, 余清婷, 刘赣勇. 基于灰度相关的数字全息孔径合成方法[J]. 激光技术, 2009, 33(3): 276-278,282.
ZHANG Qing-sheng, YU Qing-ting, LIU Gan-yong, . Method of aperture synthesizing in digital holography based on gray correlation algorithm[J]. LASER TECHNOLOGY, 2009, 33(3): 276-278,282.
Citation: ZHANG Qing-sheng, YU Qing-ting, LIU Gan-yong, . Method of aperture synthesizing in digital holography based on gray correlation algorithm[J]. LASER TECHNOLOGY, 2009, 33(3): 276-278,282.

基于灰度相关的数字全息孔径合成方法

基金项目: 

国家自然科学基金资助项目(60747001)

详细信息
    作者简介:

    张庆生〔1983- ),男,硕士研究生,现主要从事数字全息与相位测量的研究.

    通讯作者:

    吕晓旭,E-mail:xiaoxulu48@sina.com

  • 中图分类号: O438.1

Method of aperture synthesizing in digital holography based on gray correlation algorithm

  • 摘要: 为了研究数字全息中孔径合成问题,采用理论分析与实验验证的方法,通过介绍合成孔径数字全息记录和再现的基本原理,指出在合成孔径数字全息系统中,准确拼接合成子全息图是系统获得高分辨率的重要因素。提出了一种基于图像灰度分布相关的算法用以解决子全息图的准确拼接以实现孔径合成,介绍了该算法的原理,分析了该算法精度并进行了相应的实验验证,得到了预期成果。结果表明,该算法能较好地解决子全息图的拼接合成问题,在合成孔径数字全息系统中具有较好的适用性。
    Abstract: In order to study the problem of aperture synthesizing in digital holography,the method of theoretical analysis and experimental verification was adopted.The fundamental principle of recording and numerical reconstruction of the synthetic aperture digital holography was introduced.It was proved that the most important factor was synthesizing all the sub-holograms precisely to get the high resolution.A new method based on gray correlation algorithm for solving the problem on how to synthesize sub-holograms precisely was proposed.The principle of the algorithm was introduced and the precision was analyzed.The experiment results show the feasibility of the algorithm.
  • [1]

    GLEZER E N,MILOSAVIJEVIC M, HUANG L,et al.3-D optical storage inside transparent materials[J].Opt Lett, 1996,21(24):2023-2025.

    [1]

    DAMS K M,MIURA K,SUGIMOTO N,et al.Writing waveguides in glass with a femtosecond laser[J].Opt Lett, 1996, 21(21):1729-1731.

    [2]

    CHAN J W, HUSER T, RISBUD S, et al.Structural changes in fused silica after exposure to focused femtosecond laser pulses[J].Opt Lett, 2001, 26 (21);1726-1728.

    [3]

    SCHAFFER Ch B,BRODEUR A,GARCfA J F,et al.Micromachining bulk glass by use of femtosecond laser pulses with nanojoule energy [J].Opt Lett,2001,26(2);93-95.

    [4]

    NOLTE S, WILL M,BURGHOFF J, et al.Femtosecond waveguide writing;a new avenue to three-dimensional integrated optics [J].Appl Phys,2003,A77(1);109-111.

    [5]

    MINOSHIMA K,KOWALEVICZ A M,HARTL l,et al.Photonic device fabrication in glass by use of nonlinear materials processing with a femtosecond laser oscillator [J].Opt Lett,2001,26(19);1516-1518.

    [6]

    DELLA V G, OSELLAME R, CH10D0 N,et al.C-band waveguide amplifier produced by femtosecond laser writing [J].Optics Express,2005,13(16):5976-5982.

    [7]

    TACCHEO S, DELLA V G, OSEI,LAME R, et al.Er: Yb-doped waveguide laser fabricated by femtosecond laser pulses [J].Opt Lett,2004,29(22):2626-2628.

    [8]

    DELLA V G,TACCHEO S,OSELLAME R,et al.1.Sp,m single longi-tudinal mode waveguide laser fahricated by femtosecond laser writing[J].Optics Express, 2007,15 (6);3190-3194.

    [9]

    CI-IEN H Y, LIU Y Zh,DAl J Zh, et al.Design of Er3+-Yb3++co-doped phosphate glass(I,GS-L) waveguide amplifier[J].Acta Op-tica Sinica,2003,23 (6):697-701(in Chinese).

    [10]

    KELSON 1,HARDY A A.Strongly pumped fiber lasers「J].IEEE JQ E,1998,34(9):1570-1577.

    [11]

    OSELLAME R,CERULLO G,TACCHEO S,et al.Femtosecond laser writing of symmetrical optical waveguides by astigmatically shaped beams[J].SPIE,2004,5451.360-368.

    [12]

    OSELLAME R,CHIODO N,VALLE G,et al.Optical waveguide writ-ing with a diode-pumped femtosecond oscillator [J].Opt Lett,2004,29(16);1900-1902.

    [13]

    KARASEK M.Optimum design of Er3+-Yb3+ codoped fibers for large-signal high-pump-power applications [J].IEEE J Q E,1997,33(10);1699-1705.

计量
  • 文章访问数:  2
  • HTML全文浏览量:  0
  • PDF下载量:  3
  • 被引次数: 0
出版历程
  • 收稿日期:  2008-05-18
  • 修回日期:  2008-09-03
  • 发布日期:  2009-06-24

目录

    /

    返回文章
    返回