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Laser-induced Damage of 355 nm High-reflective Mirror Caused by Nanoscale Defect

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【作者】 张东平ZHU MaodongLI YanZHANG WeiliCAI XingminYE FanLIANG GuangxingZHENG ZhuanghaoFAN Ping夏志林

【Author】 ZHANG Dongping;ZHU Maodong;LI Yan;ZHANG Weili;CAI Xingmin;YE Fan;LIANG Guangxing;ZHENG Zhuanghao;FAN Ping;XIA Zhilin;Shenzhen Key Laboratory of Advanced Thin Films and Applications, Shenzhen University;Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences;School of Materials Science and Engineering,Wuhan University of Technology;

【机构】 Shenzhen Key Laboratory of Advanced Thin Films and Applications, Shenzhen UniversityShanghai Institute of Optics and Fine Mechanics, Chinese Academy of SciencesSchool of Materials Science and Engineering,Wuhan University of Technology

【摘要】 Al2O3/SiO2 multilayer high-reflective(HR) mirrors at 355 nm were prepared by electron beam evaporation, and post-irradiated with Ar/O mixture plasma. The surface defect density, reflective spectra, and laser-induced damage characteristics were measured using optical microscopy, spectrophotometry, a damage testing system, and scanning electron microscopy(SEM), respectively. The results indicated that moderate-time of irradiation enhanced the laser-induced damage threshold(LIDT) of the mirror, but prolonged irradiation produced surface defects, resulting in LIDT degradation. LIDT of the mirrors initially increased and subsequently decreased with the plasma processing time. SEM damage morphologies of the mirrors revealed that nanoscale absorbing defects in sub-layers was one of the key factors limiting the improvement of LIDT in 355 nm HR mirror.

【Abstract】 Al2O3/SiO2 multilayer high-reflective(HR) mirrors at 355 nm were prepared by electron beam evaporation, and post-irradiated with Ar/O mixture plasma. The surface defect density, reflective spectra, and laser-induced damage characteristics were measured using optical microscopy, spectrophotometry, a damage testing system, and scanning electron microscopy(SEM), respectively. The results indicated that moderate-time of irradiation enhanced the laser-induced damage threshold(LIDT) of the mirror, but prolonged irradiation produced surface defects, resulting in LIDT degradation. LIDT of the mirrors initially increased and subsequently decreased with the plasma processing time. SEM damage morphologies of the mirrors revealed that nanoscale absorbing defects in sub-layers was one of the key factors limiting the improvement of LIDT in 355 nm HR mirror.

【关键词】 laser-induced damageplasma treatmentdefect
【Key words】 laser-induced damageplasma treatmentdefect
【基金】 Funded by the National Natural Science Foundation of China(No.11174208);the NSAF(No.U1430121);the Shenzhen Basic Research Project(Nos.JCYJ20150529164656098,ZDSY20170228105421966)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2017年05期
  • 【分类号】TB383.2;TN249
  • 【下载频次】35
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