• Opto-Electronic Engineering
  • Vol. 46, Issue 11, 190099 (2019)
He Chuanwang1、2、*, Wang Lihua1, Huang Peng1、2, Dong Xiaochun1, and Fan Bin1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.12086/oee.2019.190099 Cite this Article
    He Chuanwang, Wang Lihua, Huang Peng, Dong Xiaochun, Fan Bin. Design of diffractive imaging optical system based on off-axis four-mirror[J]. Opto-Electronic Engineering, 2019, 46(11): 190099 Copy Citation Text show less
    References

    [2] Whiteaker K L, Marshalek R G, Domber J L, et al. Large aperture diffractive receiver for deep space optical communications[C]//Proceedings of Applications of Lasers for Sensing and Free Space Communications 2015, Arlington, Virginia United States, 2015: LTh3C.3.

    [3] Huang W, Ma J Y, Zhu F, et al. Low divergent diffractive optical element for remote detection[J]. Chinese Optics Letters, 2014,12(7): 070501.

    [5] Rahlves M, Rezem M, Boroz K, et al. Flexible, fast, and low-cost production process for polymer based diffractive optics[J]. Optics Express, 2015, 23(3): 3614–3622.

    [7] Tullson D, Andersen G. Broadband antihole photon sieve telescope[J]. Applied Optics, 2007, 46(18): 3706–3708.

    [9] Li Z L, Kim I, Zhang L, et al. Dielectric meta-holograms enabled with dual magnetic resonances in visible light[J]. ACS Nano,2017, 11(9): 9382–9389.

    [10] Hyde R A. Eyeglass. 1. Very large aperture diffractive telescopes[J]. Applied Optics, 1999, 38(19): 4198–4212.

    [11] Hyde R A, Dixit S N, Weisberg A H, et al. Eyeglass: a very large aperture diffractive space telescope[J]. Proceedings of SPIE,2002, 4849: 28–39.

    [12] Atcheson P D, Stewart C, Domber J, et al. MOIRE: initial demonstration of a transmissive diffractive membrane optic for large lightweight optical telescopes[J]. Proceedings of SPIE, 2012,8442: 844221.

    [13] Copp T L, Domber J L, Atcheson P D, et al. MOIRE: membrane material property characterizations, testing and lessons learned[C]//Proceedings of Spacecraft Structures Conference,National Harbor, Maryland, 2014.

    [14] Domber J L, Atcheson P D, Kommers J. MOIRE: ground test bed results for a large membrane telescope[C]//Proceedings of Spacecraft Structures Conference, National Harbor, Maryland,2014.

    [15] Atcheson P, Domber J, Whiteaker K, et al. MOIRE: ground demonstration of a large aperture diffractive transmissive telescope[J]. Proceedings of SPIE, 2014, 9143: 91431W.

    [16] Britten J A, Dixit S N, DeBruyckere M, et al. Large-aperture fast multilevel Fresnel zone lenses in glass and ultrathin polymer films for visible and near-infrared imaging applications[J]. Applied Optics, 2014, 53(11): 2312–2316.

    [17] Andersen G. Large optical photon sieve[J]. Optics Letters, 2005,30(22): 2976–2978.

    [18] Andersen G. Membrane photon sieve telescopes[J]. Applied Optics, 2010, 49(33): 6391–6394.

    [24] Faklis D, Morris G M. Broadband imaging with holographic lenses[J]. Optical Engineering, 1989, 28(6): 286592.

    [27] ZEMAX Development Corporation. Zemax OpticStudio 17 Help Files[M]. 2016.

    He Chuanwang, Wang Lihua, Huang Peng, Dong Xiaochun, Fan Bin. Design of diffractive imaging optical system based on off-axis four-mirror[J]. Opto-Electronic Engineering, 2019, 46(11): 190099
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