[1] Corbacho V. V., Kuiper H., Gill E. Review on thermal and mechanical challenges in the development of deployable space optics [J]. Journal of Astronomical Telescopes, Instruments, and System, 2020, 6(1): 010902.[2] Kim J. J., Mueller M., Martinez T., et al. Impact of large field angles on the requirements for deformable mirror in imaging satellites [J]. Acta Astronautics, 2018, 145: 44-50.[3] Wilson R. N. Reflecting Telescope Optics [M]. Springer, 2000.[4] Rodgers J. M. Unobscured mirror designs [C]. SPIE, 2002, 4832, 33-60.[5] Meng Q., Wang W., Ma H., et al. Easy-aligned off-axis three-mirror system with wide field of view using freedom surface based on integration of primary and tertiary mirror [J]. Applied Optics, 2014, 53(14): 3028-3034.[6] Meng Q. Y., Wang H. Y., Wang K. J., et al. Wang. Off-axis three-mirror freeform telescope with a large linear field of view based on an integration mirror [J]. Applied Optics, 2016, 55(32): 8962-8970.[7] Cao C., Liao S., Liao Z. Y., et al. Initial configuration design method for off-axis reflective optical system using nodal aberration theory and genetic algorithm [J]. Optical Engineering, 2019, 58(10): 105101.[8] Fu L. X., Qiu R. S., Zhang J. K., et al. Design of off-axis reflective system with four mirrors based on freeform surface [C]. Proc. SPIE, 2020, 11548: 1154813.[9] Li X. L., Xu M., Ren X. D., et al. An optical design of off-axis four-mirror-anastigmatic telescope for remote sensing [J]. Journal of the Optical Society of Korea, 2012, 16(3): 243-246.[10] Zhu J., Hou W., Zhang X. D., et al. Design of a low F-number freeform off-axis three-mirror system with rectangular field-of-view [J]. Journal of Optics, 2014, 17: 015605.[11] Liu Q., Wang X., Huang G. H., et al. Optical design of wide field view and large relative aperture off-axis three-mirror reflective system with titled optical axis [J]. Acta Photonica Sinica, 2019, 48(3): 0322002.刘强, 王欣, 黄庚华, 等. 大视场大相对孔径斜轴离轴三反望远镜的光学设计[J]. 光子学报, 2019, 48(3): 0322002.[12] Huang C. X., Liu X., Pan Z. F., et al. Design of off-axis four-mirror optical system with wide field of view based on free-form surface [J]. Laser & Infrared, 2016, 46(3): 325-328.黄辰旭, 刘欣, 潘枝峰, 等. 基于自由曲面的大视场离轴四反光学系统设计[J]. 激光与红外, 2016, 46(3): 325-328.[13] Liu R. X., Li Z. X., Duan Y. T., et al. A design for a manufacturing-constrained off-axis four-mirror reflective system [J]. Applied Sciences, 2020, 10: 5387.[14] Chen L., Liu L., Zhao Z. C., et al. Design of coaxial four-mirror anastigmat optical system with long focal length [J]. Infrared and Laser Engineering, 2019, 48(1): 0118002.陈丽, 刘莉, 赵知诚, 等. 长焦距同轴四反射镜光学系统设计[J]. 红外与激光工程, 2019, 48(1): 0118002.[15] Pan J. Y. The design, manufacture and test of the aspherical optical surface [M]. Soochow University Press, 2004.潘君骅. 光学非球面的设计、加工与检验[M]. 苏州大学出版社, 2004.[16] Xu F. G. Research on design of wide filed of view high resolution imaging optical system [D]. Changchun Institute of Optics, Fine Mechanics and Physic, Chinese Academy of Sciences, 2017.徐奉刚. 大视场高分辨率成像光学系统设计研究[D]. 中国科学院长春光学精密机械与物料研究所, 2017.[17] Chang J., Zhang X. F., Zhang K., et al. Modern reflective zoom optical system [M]. National Defense Industry Press, 2017.常军, 张晓芳, 张柯, 等. 现代反射变焦光学系统[M]. 国防工业出版社, 2017.[18] Li J. Y., Li W. Q., Long Y., et al. Design of Off-axis Three-Mirror Optical System Based on Free-Form Surface [J]. Laser & Optoelectronics Progress, 2020, 57(9): 092202.李俊阳, 李文强, 龙尤, 等. 基于自由曲面的离轴三反光学系统设计方法研究[J]. 激光与光电子进展, 2020, 57(9): 092202.[19] Cao G. L., Liu F. F., Jia Y. D., et al. Design of Ultraviolet Warning Optical System with Large Relative Aperture and Long Focal Length [J]. Laser & Optoelectronics Progress, 2019, 56(12): 122203.曹桂丽, 刘芳芳, 贾永丹, 等. 大相对孔径、长焦距的紫外告警光学系统设计[J]. 激光与光电子进展, 2019, 56(12): 122203. |