[1] 何世昆, 王刚, 白云立, 等. 大口径空间相机反射镜高反膜研究进展[J]. 激光技术, 2022, 46(1): 143-148.HE Sh K, WANG G, BAI Y L, et al. Research progress of high-reflection coatings on mirrors of large-aperture space cameras[J]. Laser Technology, 2022, 46(1): 143-148(in Chinese).
[2] BEHERA M, BEHERA S, NAIK R. Optical band gap tuning by laser induced Bi diffusion into As2Se3 film probed by spectroscopic techniques[J]. RSC Advance, 2017, 7: 18428-18437. doi: 10.1039/C7RA00922D
[3] 张力, 孟春玲, 张扬. 有限元法及ANSYS程序应用基础[M]. 北京: 科学出版社, 2008: 76.ZHANG L, MENG Ch L, ZHANG Y. Fundamentals of finite element method and ANSYS program application[M]. Beijing: Science Press, 2008: 76(in Chinese).
[4] 宋义伟, 于思源, 谭立英, 等. 空间温度场对平面反射镜面形影响研究[J]. 宇航学报, 2010, 31(3): 868-874.SONG Y W, YU S Y, TAN L Y, et al. The effects of temperature distribution in space on the figure of reflectors[J]. Journal of Astronautics, 2010, 31(3): 868-874(in Chinese).
[5] 邱服民, 王刚, 戴红玲, 等. HfO2/SiO2高反射薄膜的应力控制技术研究[J]. 激光技术, 2015, 39(6): 785-788.QIU F M, WANG G, DAI H L, et al. Study on stress controlling technology of HfO2/SiO2 high-refractive coating[J]. Laser Technology, 2015, 39(6): 785-788(in Chinese).
[6] 李志来, 徐宏, 关英俊. 1.5m口径空间相机主镜组件的结构设计[J]. 光学精密工程, 2015, 23(6): 1635-1641.LI Zh L, XU H, GUAN Y J. Structural design of 1.5 m mirror subassembly for space camera[J]. Optics and Precision Engineering, 2015, 23(6): 1635-1641(in Chinese).
[7] FAHNLINE D E, CHRISTINE B, SALAMON N J. The film stress fro, nonspherical substrate bending measurements[J]. Journal of Vacuum Science & Technology, 1991, A9(4): 2483-2487.
[8] LOIZZO R, GUARINI R, LONGO F, et al. PRISMA: The italian hyperspectral mission[C]//Proceedings of IGARSS 2018-2018 IEEE International Geoscience and Remote Sensing Symposium, 2018. Valencia, Spain: IEEE: 175-178.
[9] CHEN J, DING N W, LI Z F, et al. Organic polymer materials in the space environment[J]. Progress in Aerospace Sciences, 2016, 83: 37-56. doi: 10.1016/j.paerosci.2016.02.002
[10] SHEN Z C, MU Y Q, DING Y G, et al. Study on the mechanical property of polyimide film in space radiation environments[J]. Proceedings of the SPIE, 2016, 9796: 97960U.
[11] CIOFALO M R, MESHISHNEK M J, PANETTA C J, et al. Simulated low-earth-orbital exposure of thermalcontrol materials[J]. Journal of Spacecraft and Rockets, 2016, 53(6): 1-15.
[12] 王风丽, 周东伟, 张金帅, 等. 真空紫外Al/MgF2反射镜[J]. 光学精密工程, 2015, 23(4): 913-918.WANG F L, ZHOU D W, ZHANG J Sh, et al. Al/MgF2 mirrors in vacuum ultraviolet region[J]. Optics and Precision Engineering, 2015, 23(4): 913-918(in Chinese).
[13] 郭佳露, 刘晓凤, 赵元安, 等. 基底晶态对HfO2薄膜晶向结构和力学特性的影响[J]. 中国激光, 2016, 43(6): 0603001.GUO J L, LIU X F, ZHAO Y A, et al. Effect of substrate's crystalline structure on crystalline and mechanical properties of HfO2 thin films[J]. Chinese Journal of Lasers, 2016, 43(6): 0603001(in Chinese).
[14] 王小增. Al2O3衬底上GaN薄膜热应力和变形极差分析[J]. 激光与光电子学进展, 2015, 52(4): 041602.WANG X Z. Range analysis of thermal stress and displacement of GaN films on Al2O3 substrate[J]. Laser & Optoelectronics Progress, 2015, 52(4): 041602(in Chinese).
[15] WANG F L, ZHANG Zh Zh, WANG Zh Sh, et al. Optical constant of MgF2 coating for Al/MgF2 mirror in vacuum ultraviolet region[J]. Optics and Precision Engineering, 2017, 25(11): 2823-2828. doi: 10.3788/OPE.20172511.2823
[16] PRUSAKOVA V, COLLINI C, NARDI M, et al. The development of sol-gel derived TiO2 thin films and corresponding memristor architectures[J]. RSC Advance, 2017, 7(3): 1654-1663. doi: 10.1039/C6RA25618J
[17] 陈焘, 罗崇泰. 薄膜应力的研究进展[J]. 真空与低温, 2006, 12(2): 68-74.CHEN T, LUO Ch T. The research progress of thin film stress[J]. Vacuum & Cryogenics, 2006, 12(2): 68-74(in Chinese).
[18] 樊彦峥, 潘永强, 刘金泽, 等. 热蒸发制备大口径铝膜的膜厚均匀性分析[J]. 光学与光电技术, 2021, 19(2): 108-114.FAN Y Zh, PAN Y Q, LIU J Z, et al. Analysis of film thickness uniformity of large-diameter aluminum film deposited by thermal eva-poration[J]. Optics & Optoelectronic Technology, 2021, 19(2): 108-114(in Chinese).
[19] 张耀平, 张云洞, 凌宁, 等. 薄膜残余应力有限元分析研究[J]. 激光与光电子学进展, 2005, 42(10): 22-26.ZHANG Y P, ZHANG Y D, LING N, et al. Finite element analysis based on the residual stress of thin film[J]. Laser & Optoelectronics Progress, 2005, 42(10): 22-26(in Chinese).
[20] 王小勇, 张博文, 郭崇玲, 等. 3 m口径空间反射镜的参数优化[J]. 红外与激光工程, 2019, 48(S1): S11802.WANG X Y, ZHANG B W, GUO Ch L, et al. Parameter optimization of 3 m aperture space-based mirror[J]. Infrared and Laser Engineering, 2019, 48(S1): S11802(in Chinese).
[21] 孙熠璇, 罗世魁, 高超, 等. 大口径空间反射镜的重力卸载优化方法[J]. 红外与激光工程, 2021, 50(1): 20200103.SUN Y X, LUO Sh K, GAO Ch, et al. Optimization method for large-aperture space mirror's gravity unload[J]. Infrared and Laser Engineering, 2021, 50(1): 20200103(in Chinese).
[22] 吴清文, 卢愕, 王家骥, 等. 自重作用下中心支撑主反射镜面形变化研究[J]. 光学精密工程, 1996, 4(4): 23-28.WU Q W, LU E, WANG J J, et al. Study on the surface figure changes of primury mirror centerally supported under gravity load[J]. Optics and Precision Engineering, 1996, 4(4): 23-28(in Ch-inese).
[23] LI B Ch, CUI H, HAN Y L, et al. Simultaneous determination of optical loss, residual reflectance and transmittance of highly anti-reflective coatings with cavity ring down technique[J]. Optics Express, 2014, 22(23): 29135-29142. doi: 10.1364/OE.22.029135