• Acta Photonica Sinica
  • Vol. 46, Issue 1, 111001 (2017)
ZHAO Hui1、*, YI Hong-wei1, FAN Xue-wu1, LI Chuang1, ZOU Gang-yi1, PANG Zhi-hai1, REN Guo-rui1, ZHAO yan1, LI Ai-ling1, WEI Jing-xuan2, and XIE Xiao-peng1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/gzxb20174601.0111001 Cite this Article
    ZHAO Hui, YI Hong-wei, FAN Xue-wu, LI Chuang, ZOU Gang-yi, PANG Zhi-hai, REN Guo-rui, ZHAO yan, LI Ai-ling, WEI Jing-xuan, XIE Xiao-peng. Application of Phase Diversity Wave-front Sensing Technique to Large Space-borne Camera[J]. Acta Photonica Sinica, 2017, 46(1): 111001 Copy Citation Text show less
    References

    [1] FENG Sheng, WU Jian, ZHENG Chun-yan. Radial shearing interferometer[J]. Infrared and Laser Engineering, 2008, 37(S):188-192.

    [2] HE Li-ping, WANG Ying-jian, FAN Cheng-yu. Measurement of the phase distortion for a laser beam propagating through the atmosphere by a lateral shear interferometer[J]. Chinese Journal of Quantum Electronics, 2001, 18(S):92-96.

    [3] LIU Ruo-fan, SHEN Feng. Study on algorithm for wavefront reconstruction of curvature sensor[J]. Opto-Electronic Engineering, 2005,32(10):6-9.

    [4] SHEN Hong-bin, SUN Yu-jie, ZHANG Chu, et al. Signal error of wavefront curvature sensor for detecting Gaussian beam[J]. Journal of Applied Optics, 2009, 30(3):427-431.

    [5] SHEN Hong-bin, ZHANG Chu, SHEN Xue-ju, et al. Technology of curvature wavefront sensor for adaptive optics[J]. OME Research Forum, 2008, 7:36-42.

    [6] CHEN Xin-yang, ZHU Neng-hong. The design of software simulation based on pyramid wavefront sensor[J]. Progress in Astronomy, 2006, 24(4):363-372.

    [7] ZHU Neng-hong, CHEN Xin-yang, ZHOU Dan, et al. Study on measuring piston error of segmented mirror using pyramid sensor[J]. Chinese Journal of Sensors and Actuators, 2009, 22(3):433-437.

    [8] YUAN Ke-e, ZHU Wen-yue, RAO Rui-zhong, et al. Measurement of scintillation effect of light propagating through atmospheric turbulence by Shank-Hartmann sensor[J]. Infrared and Laser Engineering, 200, 36(S2):436-439.

    [9] HU Xin-qi, YU Xin,ZHAO Da-zun.Influence of scene structure and noise on precision of correlating Hartmann-Shack wavefront sensing[J]. Acta Optica Sinica, 2007, 27(8):1414-1418.

    [10] RAO Chang-hui, ZHANG Xue-jun, JIANG Wen-han. Simulation study on correlation Hartmann-Shack wavefront sensor for solar granulation[J]. Acta Optica Sinica, 2002, 22(3):285-289.

    [11] HU Xin-qi, YU Xin,ZHAO Da-zun. A new wavefront reconstruction method for correlating Hartmann-Shack wave front sensor[J]. Optical Technique, 2007, 33(5):710-713.

    [12] GONSALVES R A, CHILDLAW R. Wavefront sensing by phase retrieval[C]. SPIE, 1979, 207:32-39.

    [13] PAXMAN R G, FIENUP J R. Optical misalignment sensing and image reconstruction using phase diversity[J]. Journal of the Optical Society of America,1988, A5: 914-923.

    [14] CHUNG S J, DAVID W M, WECK O L. ARGOS tested: study of multidisciplinary challenges of future space borne interferometric arrays[J]. Optical Engineering, 2004, 43(9): 2156-2167.

    [15] YOUNG D D, DILLOW J, CORCORAN S. Ground demonstration of an optical control system for a space-based sparse aperture telescope[C]. SP1E,3356:1156-1167.

    [16] ZARIFIS V, BELL JRM,BENSONL R, et al. The multi aperture imaging array[C]. Proccedings from ASP Conference, 1999, 194.

    [17] LI Qiang, SHEN Mang-zuo. Wavefront sensing using phase diversity method[J]. Opto-Electronic Engineering, 2006, 33(11):114-119.

    [18] YANG Lei, LIU Zhong, JIN Zhen-yu, et al. The effect of uncertainty in defocus distance on the wave-front reconstruction with the phase diversity algorithm[J]. Astronomical Researching and Technology, 2009, 6(1): 44-50.

    [19] LIANG Shi-tong, YANG Jian-Feng, XUE Bin. A new phase diversity wave-front error sensing method based on genetic algotithm[J]. Acta Optica Sinica, 2010, 30(4):1015-1019.

    [20] WANG Zong-yang, WANG Jian-li, WANG Bin, et al. Image restoration based on phase diversity[J]. Opto-Electronic Engineering,2010, 37(12):25-29.

    [21] ZHANG A H, WANG T T. Algorithm study of phase diverse speckle corrective technique[C]. SPIE, 6595, 65951D.

    [22] WANG Xin, ZHAO Da-zun. Influence of noise to phase diversity wavefrontsensing[J].Acta Optica Sinica, 2009, 29(8):2142-2146.

    [23] DOLNE J J, TANSEY R J, BLACK K A, et al. Practical issues in wave-front sensing by use of phase diversity[J]. Applied Optics., 2003,42(36): 5284-5289.

    [24] FAULKNERH M, RODENBURG J M. Movable aperture lensless transmission microscopy: a novel phase retrieval algorithm[J]. Physical Review Letters, 2004, 93: 023903.

    [25] SMITHJ S, ARONSTEIN D L, DEAN B H, et al. Phase retrieval on broadband and under-sampled images for the JWST tested telescope[C]. SPIE, 2009, 7436:7436D.

    [29] YI Hong-wei, LI Ying-cai, FAN Chao, et al. A new method of phase diversity wave-front sensing based on SOFM NN[J]. Acta Photonica Sinica, 2008, 37(7): 1373-1377.

    ZHAO Hui, YI Hong-wei, FAN Xue-wu, LI Chuang, ZOU Gang-yi, PANG Zhi-hai, REN Guo-rui, ZHAO yan, LI Ai-ling, WEI Jing-xuan, XIE Xiao-peng. Application of Phase Diversity Wave-front Sensing Technique to Large Space-borne Camera[J]. Acta Photonica Sinica, 2017, 46(1): 111001
    Download Citation