Review of Three-Dimensional Holographic Imaging by Fresnel Incoherent Correlation Holograms

被引:9
|
作者
Rosen, Joseph [1 ]
Katz, Barak [1 ]
Brooker, Gary [2 ]
机构
[1] Ben Gurion Univ Negev, Dept Elect & Comp Engn, POB 653, IL-84105 Beer Sheva, Israel
[2] Johns Hopkins Univ, Microscopy Ctr, Whiting Sch Engn, Adv Technol Lab, Rockville, MD 20850 USA
来源
3D RESEARCH | 2010年 / 1卷 / 01期
关键词
Digital holography; incoherent holography; computer holography; synthetic aperture radar; three-dimensional image processing;
D O I
10.1007/3DRes.01(2010)3
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Holographic imaging offers a reliable and fast method to capture the complete 3-D information of the scene from a single perspective. We review our recently proposed single-channel optical system for generating digital Fresnel holograms of 3-D real-existing objects illuminated by incoherent light. In this motionless holographic technique, light is reflected, or emitted, from a 3-D object, propagates through a spatial light modulator (SLM), and is recorded by a digital camera. The SLM is used as a beam-splitter of the single-channel incoherent interferometer, such that each spherical beam originated from each object point is split into two spherical beams with two different curve radiuses. Incoherent sum of the entire interferences between all the couples of spherical beams creates the Fresnel hologram of the observed 3-D object. When this hologram is reconstructed in the computer, the 3D properties of the object are revealed.
引用
收藏
页码:28 / 35
页数:8
相关论文
共 50 条
  • [21] Review of three-dimensional holographic imaging by multiple-viewpoint-projection based methods
    Shaked, Natan T.
    Katz, Barak
    Rosen, Joseph
    APPLIED OPTICS, 2009, 48 (34) : H120 - H136
  • [22] Digital holographic three-dimensional imaging spectrometry and depth imaging properties
    Teeranutranont, Sirawit
    Yoshimori, Kyu
    ICPS 2013: INTERNATIONAL CONFERENCE ON PHOTONICS SOLUTIONS, 2013, 8883
  • [23] Holographic Storage Device with Three-Dimensional Sampling Based on Reflective Fourier Holograms.
    Maiorov, S.A.
    Ochin, E.F.
    ROmanov, Yu.F.
    Tropchenko, A.Yu.
    Izvestia vyssih ucebnyh zavedenij. Priborostroenie, 1980, 23 (05): : 42 - 46
  • [24] Extended focused imaging for digital holograms of macroscopic three-dimensional objects
    McElhinney, Conor P.
    Hennelly, Bryan M.
    Naughton, Thomas J.
    APPLIED OPTICS, 2008, 47 (19) : D71 - D79
  • [25] Fresnel coefficients for weak reflection, and the scattering potential for three-dimensional imaging
    Sheppard, CJR
    Aguilar, F
    OPTICS COMMUNICATIONS, 1999, 162 (4-6) : 182 - 186
  • [26] Three-dimensional ISAR imaging: a review
    Martorella, Marco
    Salvetti, Federica
    Stagliano, Daniele
    Giusti, Elisa
    JOURNAL OF ENGINEERING-JOE, 2019, 2019 (20): : 6823 - 6828
  • [27] Three-dimensional holograms put on a display
    Gould, Paula
    MATERIALS TODAY, 2008, 11 (04) : 9 - 9
  • [28] Three-dimensional nonlinear optical holograms
    Wu, Yujia
    Liu, Haigang
    Chen, Xianfeng
    PHYSICAL REVIEW A, 2020, 102 (06)
  • [29] Three-dimensional imaging of cultural heritage artifacts with holographic printers
    Kang, Hoonjong
    Stoykova, Elena
    Berberova, Nataliya
    Park, Jiyong
    Nazarova, Dimana
    Park, Joo Sup
    Kim, Youngmin
    Hong, Sunghee
    Ivanov, Branimir
    Malinowski, Nikola
    19TH INTERNATIONAL CONFERENCE AND SCHOOL ON QUANTUM ELECTRONICS: LASER PHYSICS AND APPLICATIONS, 2017, 10226
  • [30] Three-dimensional imaging - Instant printer makes holographic animations
    不详
    LASER FOCUS WORLD, 2001, 37 (04): : 66 - +