刘旸,张国同,崔新军.本底真空度和残余气体对激光薄膜光学性能影响的研究[J].表面技术,2015,44(5):102-105,142.
LIU Yang,ZHANG Guo-tong,CUI Xin-jun.Research on Effects of Background Pressure and Residual Gas on Optical Property of Laser Film[J].Surface Technology,2015,44(5):102-105,142
本底真空度和残余气体对激光薄膜光学性能影响的研究
Research on Effects of Background Pressure and Residual Gas on Optical Property of Laser Film
投稿时间:2015-01-08  修订日期:2015-05-20
DOI:10.16490/j.cnki.issn.1001-3660.2015.05.019
中文关键词:  激光薄膜  本底真空度  抗激光阀值  真空设备
英文关键词:laser film  background pressure  anti-laser threshold  vacuum equipment
基金项目:
作者单位
刘旸 河南工业职业技术学院, 河南 南阳 473000 
张国同 河南工业职业技术学院, 河南 南阳 473000 
崔新军 华宇光学薄膜研究所, 河南 南阳 473000 
AuthorInstitution
LIU Yang Henan Polytechnic Institute, Nanyang 473000, China 
ZHANG Guo-tong Henan Polytechnic Institute, Nanyang 473000, China 
CUI Xin-jun Huayu Optical Thin-film Institute, Nanyang 473000, China 
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中文摘要:
      目的 提高真空镀膜机镀膜时薄膜的抗激光能力,研究镀膜机箱体内本底真空度和残余气体对激光薄膜光学性能的影响程度。 方法 借用一台较高配置的真空镀膜机,为了方便定性和定量的研究,可预先有针对性地设定不同的本底真空度,同时配合不同的残余气体等各种情况,来制备激光薄膜。 通过对各种激光薄膜的检测,分别研究不同的设定条件对制备激光薄膜的具体影响。 结果 油汽在分压强1. 6×10-3 Pa 时对激光薄膜的抗激光损伤阀值最高;水汽的分压强越大,对激光薄膜的抗激光损伤阀值最小;当氧汽分压达到 1. 5×10-2 Pa 时,抗激光损伤阀值开始急剧变小;在压强小于 2. 0×10-4 Pa 的范围内,薄膜的抗激光损伤阀值随本底真空度的增大而增大;压强大于 5. 0×10-5 Pa 时,薄膜的抗激光损伤阀值逐渐减小。 结论 提高真空设备的本底真空度,降低真空系统中残余气体的数量、成分及含量,尤其是 H2O和 O2 是提高激光薄膜光学性能关键。
英文摘要:
      Objective To study the influence of the background pressure and the residual gas in the coating crate on optical properties of the laser film so as to improve the laser resistance of thin film when using the vacuum coating machine for coating. Methods A vacuum coating equipment was borrowed for the experiment. For the convenience to conduct qualitative and quantitative study, different background pressures were preset specifically in coordination with different residual gases and other conditions to prepare the laser film. Each kind of laser film was tested to investigate the specific influence of different setting conditions on preparation of laser film. Results Experimental results showed that the anti-laser damage threshold of the film was the highest when the oil and gas was at a partial pressure of 1. 6×10-3 Pa. The greater the partial pressure of water vapor was, the smaller the anti-laser damage threshold of the laser film would be. When the oxygen partial pressure reached 1. 5×10-2 Pa, the anti-laser damage threshold began to decrease dramatically. When the pressure was less than 2. 0×10-4 Pa, the anti-laser damage threshold of the film increased with the increase of the background pressure. When the pressure was greater than 5. 0×10-5 Pa, the anti-laser damage threshold of the film gradually decreased. Conclusion Increasing the background pressure of the vacuum equipment and reducing the amount, composition and content of residual gas in the vacuum system, especially H2 O and O2 , is the key to improve the optical performance of laser film.
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