Novel computer-generated hologram encoding method based on partially temporal coherent light

被引:5
|
作者
Duan, Xinhui [1 ]
Liu, Juan [1 ]
Li, Xin [1 ]
Xue, Gaolei [1 ]
Zhao, Tao [1 ]
Duan, Junyi [1 ]
机构
[1] Beijing Inst Technol, Sch Opt & Photon, Beijing 100081, Peoples R China
来源
OPTICS EXPRESS | 2019年 / 27卷 / 05期
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
LOOK-UP-TABLE; IMAGE QUALITY IMPROVEMENT; SPECKLE-NOISE-REDUCTION; DIGITAL HOLOGRAPHY; GERCHBERG-SAXTON; PHASE; ALGORITHM; DISPLAY; RECONSTRUCTION; PROJECTION;
D O I
10.1364/OE.27.006851
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Partially temporal coherent light (PTCL) has been applied to holographic reconstruction to reduce speckle noise in display systems, while the encoding methods of computer-generated hologram (CGH), based on PTCL, have not been reported. We propose a novel method to encoding CGH, in which a PTCL with a broadband continuous spectrum is used to illuminate the object image. The continuous spectrum is discretized into different wavelengths and a weight value associated with PTCL power spectrum is assigned to each wavelength. The diffractive transmission is based on Fresnel diffraction theory. The phase distribution of the encoded CGH is obtained using the sum of multiplying the different CGH phase distributions of corresponding discrete wavelengths by the corresponding weight values. The modulation results without iteration are performed to verify the feasibility of the proposed method and the iterative algorithm is introduced to improve the quality of the modulation. The reconstructed images from the proposed encoding method exhibit high quality as compared with that obtained from the encoding method based on ideal temporal coherent light. Numerical simulations and optical experiments are good consistent with each other. The proposed method can provide a reference for various wave-front modulations. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:6851 / 6862
页数:12
相关论文
共 50 条
  • [31] Data Transmission Based on Fractal Compression of Object Light Data in Computer-Generated Hologram
    Oi, Hiroki
    Sakamoto, Yuji
    INTERNATIONAL WORKSHOP ON ADVANCED IMAGING TECHNOLOGY (IWAIT) 2021, 2021, 11766
  • [32] Implementation of image encoding and decoding with computer-generated hologram of fractional Fourier transform
    Guo, YK
    Zeng, YS
    Xie, SW
    Gao, FH
    Zhu, JH
    Zhang, YX
    Peng, QJ
    Du, JL
    Zhang, J
    HOLOGRAPHY, DIFFRACTIVE OPTICS, AND APPLICATIONS, 2002, 4924 : 31 - 38
  • [33] RECONFIGURABLE OPTICAL INTERCONNECTS BY A COMBINED COMPUTER-GENERATED HOLOGRAM AND SPATIAL LIGHT-MODULATOR METHOD
    MORRIS, JE
    FELDMAN, MR
    APPLIED OPTICS, 1994, 33 (17): : 3683 - 3694
  • [34] Method for generating planar computer-generated hologram at free viewpoint from cylindrical object light
    Baba, Tatsuhiko
    Kon, Ryotaro
    Sakamoto, Yuji
    OPTICAL ENGINEERING, 2022, 61 (11)
  • [35] A Watermarking Scheme based on NSCT Using Computer-Generated Hologram
    Yang, Xiaoyuan
    Yang, Haibin
    Luo, Peng
    INFORMATION TECHNOLOGY APPLICATIONS IN INDUSTRY, PTS 1-4, 2013, 263-266 : 3100 - 3103
  • [36] Design method of a liquid crystal based computer-generated hologram for freeform surface measurement
    Hao, Qun
    Wang, Shaopu
    Hu, Yao
    2017 22ND MICROOPTICS CONFERENCE (MOC), 2017, : 244 - 245
  • [37] Freeform metrology based on phase retrieval and computer-generated hologram
    Zeng, Fa
    Tan, Qiaofeng
    Liu, Yi
    Gu, Huarong
    Zhou, Zhehai
    Jin, Guofan
    OPTICAL DESIGN AND TESTING VI, 2014, 9272
  • [38] Fast calculation of computer-generated hologram using run-length encoding based recurrence relation
    Nishitsuji, Takashi
    Shimobaba, Tomoyoshi
    Kakue, Takashi
    Ito, Tomoyoshi
    OPTICS EXPRESS, 2015, 23 (08): : 9852 - 9857
  • [39] Novel genetic algorithm for the multiplexed computer-generated hologram with polygonal apertures
    Gillet, JN
    Sheng, YL
    HOLOGRAPHY, DIFFRACTIVE OPTICS, AND APPLICATIONS, 2002, 4924 : 14 - 25
  • [40] High Resolution Computer-Generated Rainbow Hologram
    Yamaguchi, Takeshi
    Yoshikawa, Hiroshi
    APPLIED SCIENCES-BASEL, 2018, 8 (10):