首页 | 官方网站   微博 | 高级检索  
     

HfO_2/SiO_2高反射膜的缺陷及其激光损伤
引用本文:胡建平,陈梅,付雄鹰,柴林.HfO_2/SiO_2高反射膜的缺陷及其激光损伤[J].强激光与粒子束,2001(5).
作者姓名:胡建平  陈梅  付雄鹰  柴林
作者单位:成都精密光学工程研究中心!四川成都610041
基金项目:国家 8 63惯性约束聚变领域资助课题 (863 -4 16-2 )
摘    要:用原子力、Normaski和扫描电子显微镜等分析仪器 ,对高损伤阈值薄膜常采用的 Hf O2 /Si O2 薄膜进行了表面显微图象研究 ,分析了薄膜常见的表面缺陷 ,如节瘤 ,孔洞和划痕等。薄膜表面缺陷的激光损伤实验表明 ,不同缺陷的抗激光损伤能力大不相同 ,节瘤缺陷最低 ,约为 1 5 J/ cm2 ,薄膜的损伤阈值主要由其决定 ,孔洞的激光损伤能力与节瘤相比较高 ,约为节瘤的 2~ 3倍。节瘤缺陷在低能量密度的激光损伤所形成的孔洞 ,与镀制过程中形成的孔洞形貌相似 ,激光再损伤能力也相似。低能量密度的激光把节瘤缺陷变为孔洞缺陷是激光预处理提高薄膜损伤阈值的原因之一

关 键 词:HfO2/SiO2高反射薄膜  表面缺陷  激光损伤

Relation between laser damage and defects of HfO_2/SiO_2 HR coatings
HU Jian ping,CHEN Mei,FU Xiong ying,CAI Lin.Relation between laser damage and defects of HfO_2/SiO_2 HR coatings[J].High Power Laser and Particle Beams,2001(5).
Authors:HU Jian ping  CHEN Mei  FU Xiong ying  CAI Lin
Abstract:In the application of high power lasers, damage of coating multilayers of laser systems mainly limits the laser performance, so there is great interest in reducing the susceptibility of optical coating damage. In this paper, defects of HfO 2/SiO 2 high reflected coatings and their laser damage are studied in details. The coating samples were deposited by e beam evaporation onto K 9 glass substrates using hafnia silica materials. The defects and damage morphologies of coating were observed and analyzed by AFM,Normaski and SEM microscopes. In damage experiment, it was found that the coating onset damage is mainly caused by nodular defect. The laser energy density for damaging the pits (flat bottom pits for example) is 2-3 times as that (about 15J/cm 2) for damaging nodular. The size and anti damage ability of the pits formed from nodular damage is similar to that of the pits formed from the coatings deposition. The low energy density laser's turning nodulars into pits is one of the reasons that laser pretreatment improves the damage threshold of the hafina/silica coatings.
Keywords:HfO  2/SiO  2 HR coatings  defects of coatings  nodular and laser damage
本文献已被 CNKI 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号