Chinese Journal of Lasers, Volume. 44, Issue 6, 604005(2017)
Internal Defects of Large Optics Detected by Total Internal Reflection Technique
[1] [1] Baisden P A, Atherton L J, Hawley R A, et al. Large optics for the national ignition facility[J]. Fusion Sci Technol, 2016, 69(1): 295-351.
[2] [2] Haynam C A, Wegner P J, Auerbach J M, et al. National ignition facility laser performance status[J]. Appl Opt, 2007, 46(16): 3276-3303.
[3] [3] André M L. The French megajoule laser project (LMJ)[J]. Fusion Eng Des, 1999, 44(1-4): 43-49.
[4] [4] Jiang Shaoen, Ding Yongkun, Liu Shenye, et al. Recent inertial confinement fusion experiments and diagnostic techniques on the shenguang laser facility[J]. Physics, 2010, 39(8): 531-542.
[5] [5] Wang Zhuo. Study on the detection and control techniques of subsurface damage in optical fabrication[D]. Changsha: National University of Defense Technology, 2008: 2-5.
[6] [6] Lamaignère L, Chambonneau M, Diaz R, et al. Laser damage resistance qualification of large optics for high power laser[C]. SPIE, 2015, 9345: 934508.
[7] [7] Stifter D. Nondestructive material testing using OCT[M]//Drexler W, Fujimoto J G. Optical Coherence Tomography: Technology and Applications. Second Edition. Switzerland: Springer International Publishing, 2015: 2497-2527.
[8] [8] Catrin R, Neauport J, Legros P, et al. Using STED and ELSM confocal microscopy for a better knowledge of fused silica polished glass interface[J]. Opt Express, 2013, 21(24): 29769-29779.
[9] [9] Sheehan L M, Kozlowski M R, Camp D W. Application of total internal reflection microscopy for laser damage studies on fused silica[C]. SPIE, 1998, 3244: 282-295.
[10] [10] Wang Jinghe, Zhang Lei, Wang Hongxiang, et al. Fused quartz subsurface damage detecting method based on confocal fluorescence microscopy[J]. Chinese J Lasers, 2015, 42(4): 0406004.
[12] [12] Temple P A. Total internal reflection microscopy: a surface inspection technique[J]. Appl Opt, 1981, 20(15): 2656-2664.
[13] [13] Kranenberg C F, Jungling K C. Subsurface damage identification in optically transparent materials using a nondestructive method[J]. Appl Opt, 1994, 33(19): 4248-4253.
[14] [14] Cui Hui, LiuShijie, Zhao Yuanan, et al. Study on total internal reflection microscopy for subsurface damage[J]. Acta Optica Sinica, 2014, 34(6): 0612004.
[15] [15] Fitzgibbon A W, Pilu M, Fisher R B. Direct least-square fitting of ellipses[J]. IEEE T Pattern Anal, 1999, 21(5): 476-480.
[16] [16] Wang Dan, Liao Yanbiao, Zhang Min. Analysis of precisions of parameters calculated by ellipse fitting in double beam interferometer[J]. Acta Optica Sinica, 2016, 36(3): 0312002.
[17] [17] Yan Bei, Wang Bin, Li Yuan. Optimal ellipse fitting method based on least-square principle[J]. Journal of Beijing University of Aeronautics and Astronautics, 2008, 34(3): 295-298.
[18] [18] Fan S S, Wang B. An improved canny edge detection algorithm[C]. Computer Science and Engineering, 2009: 497-500.
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Yang Feifei, Miao Jie, Xie Yujiang, Liu Dean, Zhu Jianqiang. Internal Defects of Large Optics Detected by Total Internal Reflection Technique[J]. Chinese Journal of Lasers, 2017, 44(6): 604005
Category: measurement and metrology
Received: Jan. 20, 2017
Accepted: --
Published Online: Jun. 8, 2017
The Author Email: Feifei Yang (yangfeifei_11@163.com)