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Graded index broadband antireflection coating prepared by glancing angle deposition for a high-power laser system |
Kong Wei-Jin(孔伟金)a)†, Shen Zi-Cai(沈自才)b),Wang Shu-Hua(王淑华)a),Shao Jian-Da(邵建达)c), Fan Zheng-Xiu(范正修)c), and Lu Chao-Jing(卢朝靖) a) |
a College of Physics Science, Qingdao University, Qingdao 266071, China; b Beijing Institute of Spacecraft Environment Engineering, Beijing 100094, China; c Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China |
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Abstract This paper reports that SiO2 is selected to fabricate broadband antireflection (AR) coatings on fused silica substrate by using glancing angle deposition and physical vapour deposition. Through accurate control of the graded index of the SiO2 layer, transmittance of the graded broadband AR coating can achieve an average value of 98% across a spectral range of 300--1850 nm. Moreover, a laser-induced damage threshold measurement of the fabricated AR coating is performed by using a one-on-one protocol according to ISO11254-1, resulting in an average damage threshold of 17.2 J/cm$^{2}$.
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Received: 24 November 2008
Revised: 06 July 2009
Accepted manuscript online:
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PACS:
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42.79.Wc
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(Optical coatings)
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42.79.Ry
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(Gradient-index (GRIN) devices)
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Fund: Project supported by the National Natural Science
Foundation of China (Grant No.~10804060), Higher
Educational Science and Technology Program of Shandong Province of China (Grant No.~J08LI05). |
Cite this article:
Kong Wei-Jin(孔伟金), Shen Zi-Cai(沈自才),Wang Shu-Hua(王淑华),Shao Jian-Da(邵建达), Fan Zheng-Xiu(范正修), and Lu Chao-Jing(卢朝靖) Graded index broadband antireflection coating prepared by glancing angle deposition for a high-power laser system 2010 Chin. Phys. B 19 044210
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