Acta Optica Sinica, Volume. 42, Issue 21, 2122001(2022)

Compact Large Field-of-View Optical Design Based on Joint Aberration Solution

Zheng Qu1,2,3, Xing Zhong3,4、*, Kun Zhang5, Yuanhang Wang1,2,3, Lei Li1,2,3, and Sipeng Wu1,2,3
Author Affiliations
  • 1Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, Jilin , China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Chang Guang Satellite Technology Co., Ltd., Changchun 130102, Jilin , China
  • 4Key Laboratory of Advanced Technology for Aerospace Vehicles of Liaoning Province, Dalian University of Technology, Dalian 116024, Liaoning , China
  • 5Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, Sichuan , China
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    References(35)

    [1] Gilmozzi R, Spyromilio J. The European extremely large telescope (E-ELT)[J]. Messenger, 127, 11-19(2007).

    [2] Gao D R, Hu H, Wang W et al. Optical design for a kind of simply processed and installed off-axis three-reflection[J]. Chinese Journal of Lasers, 42, 0616001(2015).

    [3] Johns M, McCarthy P, Raybould K et al. Giant Magellan telescope: overview[J]. Proceedings of SPIE, 8444, 84441H(2012).

    [4] Liu C, Straif C, Flügel-Paul T et al. Comparison of hyperspectral imaging spectrometer designs and the improvement of system performance with freeform surfaces[J]. Applied Optics, 56, 6894-6901(2017).

    [5] Sanders G H. The thirty meter telescope (TMT): an international observatory[J]. Journal of Astrophysics and Astronomy, 34, 81-86(2013).

    [6] Batshev V I, Bodrov S V. A compact three-mirror astronomical objective[J]. Instruments and Experimental Techniques, 59, 557-561(2016).

    [7] Ersumo N T, Yalcin C, Antipa N et al. A micromirror array with annular partitioning for high-speed random-access axial focusing[J]. Light: Science & Applications, 9, 183(2020).

    [8] Korsch D. Anastigmatic three-mirror telescope[J]. Applied Optics, 16, 2074-2077(1977).

    [9] Robb P N. Three-mirror telescopes: design and optimization[J]. Applied Optics, 17, 2677-2685(1978).

    [10] Cook L G. Three-mirror anastigmat used off-axis in aperture and field[J]. Proceedings of SPIE, 0183, 207-211(1979).

    [11] Meng Q Y, Wang H Y, Liang W J et al. Design of off-axis three-mirror systems with ultrawide field of view based on an expansion process of surface freeform and field of view[J]. Applied Optics, 58, 609-615(2019).

    [12] Wu R M, Ding Z H, Yang L et al. Precise light control in highly tilted geometry by freeform illumination optics[J]. Optics Letters, 44, 2887-2890(2019).

    [13] Tang R R, Jin G F, Zhu J. Freeform off-axis optical system with multiple sets of performance integrations[J]. Optics Letters, 44, 3362-3365(2019).

    [14] Rolland J P, Davies M A, Suleski T J et al. Freeform optics for imaging[J]. Optica, 8, 161-176(2021).

    [15] Yang T, Duan Y Z, Cheng D W et al. Freeform imaging optical system design: theories, development, and applications[J]. Acta Optica Sinica, 41, 0108001(2021).

    [16] Miñano J C, Benítez P, Lin W et al. An application of the SMS method for imaging designs[J]. Optics Express, 17, 24036-24044(2009).

    [17] Yang T, Zhu J, Hou W et al. Design method of freeform off-axis reflective imaging systems with a direct construction process[J]. Optics Express, 22, 9193-9205(2014).

    [18] Zhong Y, Gross H. Initial system design method for non-rotationally symmetric systems based on Gaussian brackets and Nodal aberration theory[J]. Optics Express, 25, 10016-10030(2017).

    [19] Volatier J B, Druart G. Differential method for freeform optics applied to two-mirror off-axis telescope design[J]. Optics Letters, 44, 1174-1177(2019).

    [20] Cao C, Liao S, Liao Z Y et al. Design of off-axis reflective optical system with large field-of-view based on freeform surfaces[J]. Acta Optica Sinica, 40, 0808001(2020).

    [21] Liu J, Wei H, Fan H J. A novel method for finding the initial structure parameters of optical systems via a genetic algorithm[J]. Optics Communications, 361, 28-35(2016).

    [22] Cao C, Liao S, Liao Z Y et al. Initial configuration design method for off-axis reflective optical systems using nodal aberration theory and genetic algorithm[J]. Optical Engineering, 58, 105101(2019).

    [23] Yu X, Wang H Y, Yao Y et al. Automatic design of a mid-wavelength infrared dual-conjugate zoom system based on particle swarm optimization[J]. Optics Express, 29, 14868-14882(2021).

    [24] Xu C, Lai X M, Cheng D W et al. Automatic optical path configuration variation in off-axis mirror system design[J]. Optics Express, 27, 15251-15261(2019).

    [25] Chen W C, Yang T, Cheng D W et al. Generating starting points for designing freeform imaging optical systems based on deep learning[J]. Optics Express, 29, 27845-27870(2021).

    [26] Wu W C, Jin G F, Zhu J. Optical design of the freeform reflective imaging system with wide rectangular FOV and low F-number[J]. Results in Physics, 15, 102688(2019).

    [27] Thompson K. Description of the third-order optical aberrations of near-circular pupil optical systems without symmetry[J]. Journal of the Optical Society of America A, 22, 1389-1401(2005).

    [28] Zhang Y M[M]. Contemporary applied optics(2018).

    [29] Pang Z H, Fan X W, Ren G R et al. Study of aberration characteristic of off-axis reflective system[J]. Infrared and Laser Engineering, 45, 0618002(2016).

    [30] Pan J H[M]. The design, manufacture and test of the aspherical optical surfaces(2004).

    [31] Arora J S. Discrete variable optimum design concepts and methods[M]. Arora J S. Introduction to optimum design, 513-530(2004).

    [32] Fuerschbach K, Rolland J P, Thompson K P. A new family of optical systems employing φ‑polynomial surfaces[J]. Optics Express, 19, 21919-21928(2011).

    [33] Yang T, Zhu J, Jin G F. Nodal aberration properties of coaxial imaging systems using Zernike polynomial surfaces[J]. Journal of the Optical Society of America A, 32, 822-836(2015).

    [34] Wang X K, Xue D L, Zhang X J. Fabrication and testing of large aspheric system based on common reference[J]. Optics and Precision Engineering, 26, 743-748(2018).

    [35] Li M. Research on key technology of hybrid null testing of aspheric mirrorand off-axis optical system alignment based on CGH[D], 6-8(2015).

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    Zheng Qu, Xing Zhong, Kun Zhang, Yuanhang Wang, Lei Li, Sipeng Wu. Compact Large Field-of-View Optical Design Based on Joint Aberration Solution[J]. Acta Optica Sinica, 2022, 42(21): 2122001

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    Paper Information

    Category: Optical Design and Fabrication

    Received: Mar. 14, 2022

    Accepted: May. 22, 2022

    Published Online: Nov. 4, 2022

    The Author Email: Zhong Xing (ciomper@163.com)

    DOI:10.3788/AOS202242.2122001

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