Citation: | JIANG Qi, XU Gui-li, LI Kai-yu, TIAN Yu-peng. Angle measurement based on optical polarization beam imaging[J]. Journal of Applied Optics, 2011, 32(5): 931-936. |
[1]BABA J S, MELEDEO A, CAMERON B D, et al. Investigation of pH and temperature on optical rotatory dispersion for -noninvasive glucose monitoring [J]. Optical Diagnostics and Sensing of Biological Fluids and Glucose and Cholesterol Monitoring,2001, 20 (2) : 25-33 .
[2]ZHANG Ying, SONG Feijun, LI Hai-yan,et al.Precise measurement of optical phase retardation of a wave plate using modulated-polarized light [J]. Appl Opt,2010,49(30):5837-43. [3]石一磊,苏俊宏,杨利红,等.基于相位偏移干涉术的薄膜厚度测量方法[J].应用光学,2009,30(1):76-79;83. SHI Yi-lei, SU Jun-hong, YANG Li-hong, et al. Measuring thin-film thickness with phase-shift interferometry[J]. Journal of Applied Optics,2009,30(1):76-79,83.(in Chinese with an English abstract) [4]冯燕,何明一,俞华璟,等.基于图像处理的玻璃均匀性检测系统[J].计算机应用,2004,24(4):64-66. FENG Yan,HE Ming-yi,YU Hua-jing,et al. A glass uniformity inspection system based on image processing[J]. Computer Application,2004,24(4):64-66. (in Chinese with an English abstract) [5]章博.基于旋光效应的糖浓度检测[D].哈尔滨:黑龙江大学,2007. ZHANG Bo. Measuring technology of sugar solution based on optical rotation effect[D]. Ha er bin: Heilongjiang University, 2007.(in Chinese) [6]NOVOTNY P, MOROZOV, M, HUDEC. On the application of magneto-optic films in NDE[J].Ndt & E international,2002,35(4):227-232. [7]NOVOTNY P, SAJDL P,MACHAC P. A magneto-optic imager for NDT applications[J].Ndt & E international,2004,37(8):645-649. [8]JOUBERT PY, PINASSAUD J. Linear magneto-optic imager for non-destructive evaluation[J].Sensors and Actuators A-Physical,2006,129(12):126-130. [9]ZHAO KC, CHU J K,WANG T C, et al.A novel angel algorithm of polarization sensor for navigation[J].IEEE Transactions - on Instrumentation and Measurement.,2009,58(8):2791-2796. [10]EMDE C,BURAS R, MAYER B, et al.The impact of aerosols on polarized sky radiance: model development, validation, and applications[J]. Atmospheric Chemistry and Physics, 2010,10(2):383-396. [11]孙昕,赵红福,孙寒,等.法拉第效应实验装置中光路的设计[J].物理实验,2005,25(3):37-38. SUN Xin,ZHAO Hong-fu,SUN Han,et al. Design of a light path for Faraday effect experiment device[J]. Physics Experimentation, 2005,25(3):37-38. [12]郝蕴琦,李海宁,杨坤,等.法拉第镜旋转角的偏振分束测量法[J].应用光学,2009,30(4):626-630. HAO Yun-qi, LI Hai-ning, YANG Kun,et al. Polarization-beam-splitter measurement of rotary angle for Faraday mirror[J]. Journal of Applied Optics, 2009,30(4):626-630. (in Chinese with an English abstract) [13]林丽艳,杜 磊,何 亮,等. 光电探测器的电噪声及其应用[J]. 红外,2009,30(12):33-38. LIN Li-Yan, DU Lei, HE Liang,et al. Electric noise in photodetectors and its application[J]. Infrared,2009,30(12):33-38. (in Chinese with an English abstract) [14]孙涛,陈兴国,胡晓宁,等. HgCdTe长波光伏探测器的表面漏电流及1/f噪声研究[J].物理学报,2005,54(7):3357-3362. SUN Tao, CHEN Xing-guo, HU Xiao-Ning,et al. Analysis of surface leakage and 1/f noise on long-wavelength infrared HgCdTe photodiodes [J]. Acta Physica Sinica,2005,54(7):3357-3362. (in Chinese with an English abstract) [15]CWIRKO R,BIELECKI Z,CWIRKO J, et al. Low-frequency noises as a tool for UV detector characterisation[J]. Opto-Electronics Review,2006,14(2):155-160. [16]俞华璟.图像处理在玻璃均匀性检测中的应用[D].西安:西北工业大学,2003. YU Hua-jing. Aplication of image processing in the inspection of glass′s uniformity[D]. Xi-an:-Northwestern Polytechnical Unlversity,2003.(in Chinese) [17]任仙怡,张桂林,张天序,等. 基于奇异值分解的图像匹配方法[J]. 红外与激光工程,2001,30(4):200-202. REN Xian-yi,ZHANG Gui-lin,ZHANG Tian-xu,et al. Image matching method based on singular value decomposition[J]. Infrared and Laser Engineering,2001,30(4):200-202. (in Chinese with an English abstract) [18]康海洋,王杰生,何国金. 基于有向模板和颜色加权SVD的图像匹配算法[J]. 中国图像图形学报,2008,13(6):1177-1184. KANG Hai-yang, WANG Jie-sheng ,HE Guo-jin. Image matching algorithm based on oriented-patch and color-weighted SVD[J]. Journal of Image and Graphics,2008,13(6):1177-1184. (in Chinese with an English abstract) |
[1] | ZHANG Jiyan, LIN Haifeng, HUANG Zhangchao. Compact large relative aperture long wavelength infrared athermalization optical system with chalcogenide glasses[J]. Journal of Applied Optics, 2021, 42(5): 790-795. DOI: 10.5768/JAO202142.0501005 |
[2] | Xie Hongbo, Meng Qingbin, Yang Lei, Jiang Min, Fang Chunlun, Ren Delun. Athermalization and suppression of narcissus for medium-wave infrared optical system[J]. Journal of Applied Optics, 2017, 38(3): 352-357. DOI: 10.5768/JAO201738.0301003 |
[3] | Zhang Wanyi. Athermalization design of infrared refractive-diffractive telephoto objective[J]. Journal of Applied Optics, 2017, 38(1): 12-18. DOI: 10.5768/JAO201738.0101003 |
[4] | DENG Jian, LI Rui-gang, DENG Xian-chi, WU Bin. Athermalizing mirror-lens infrared optical system[J]. Journal of Applied Optics, 2014, 35(1): 146-149. |
[5] | LI Yan, ZHANG Bao, HONG Yong-feng, ZHAO Chun-lei. Athermalization of dual field of view infrared system[J]. Journal of Applied Optics, 2013, 34(3): 385-390. |
[6] | BAI Yu, XING Ting-wen, LIN Wu-mei, XIE Wei-min. Athermalization of middle infrared optical system[J]. Journal of Applied Optics, 2012, 33(1): 181-185. |
[7] | LIU Jun, WU Xiao-chen. Athermalisation of infrared Cassegrain optical system in missile[J]. Journal of Applied Optics, 2012, 33(1): 175-180. |
[8] | ZHANG Xu-yan, JIANG Rui-kai, JIA Hong-guang. Athermalization of long-wave infrared optical system with large relative aperture[J]. Journal of Applied Optics, 2011, 32(6): 1227-1231. |
[9] | WANG Xue-xin, JIAO Ming-yin. Combination of optical passive and mechanical-electrical athermalisation[J]. Journal of Applied Optics, 2010, 31(3): 354-359. |
[10] | SHEN Liang-ji, FENG Zhuo-xiang. Athermal design of refractive/diffractive hybrid infrared optical system working at 3.7μm~4.8μm[J]. Journal of Applied Optics, 2009, 30(4): 683-687. |