首页> 外文会议>SPIE Conference on Optical Fibers and Sensors for Medical Diagnostics and Treatment Applications >Design and fabrication of multilayer thin film coated hollow waveguides for enhanced infrared radiation delivery
【24h】

Design and fabrication of multilayer thin film coated hollow waveguides for enhanced infrared radiation delivery

机译:多层薄膜涂层空心波导的设计与制造,用于增强红外辐射输送

获取原文

摘要

Metal coated Hollow Glass Waveguides (HGWs) incorporating single dielectric thin films have been widely used for the low-loss transmission of infrared radiation in applications ranging from surgery to spectroscopy. While the incorporation of single dielectric film designs have traditionally been used in metal/dielectric coated HGWs, recent research has focused on the development of alternating low/high refractive index multilayer dielectric thin film stacks for further transmission loss reduction. Continuing advances in the deposition of optically functional cadmium sulfide and lead sulfide thin films in HGWs have allowed for the simultaneous increase in film quality and greater film thickness control necessary for the implication of such multilayer stack designs for enhanced reflectivity at infrared wavelengths. This study focuses on the theoretical and practical considerations in the development of such multilayer stack coated waveguides and presents novel results including film growth kinetics of multilayer stack thin film materials, IR spectroscopic analysis, and IR laser attenuation measurements. The effects of incorporating progressive alternating cadmium sulfide and lead sulfide dielectric thin films on the optical properties of next generation dielectric thin film stack coated HGWs in the near and mid infrared regions are thoroughly presented. The implications of incorporating such dielectric multilayer stack coatings based on metal sulfide thin films on the future of IR transmitting hollow waveguides for use in applications ranging from spectroscopy, to high laser power delivery are briefly discussed.
机译:金属涂覆的中空玻璃波导(HGWs)将单个电介质薄膜已被广泛地用于在应用范围从手术至光谱的红外辐射的低损耗传输。虽然传统上用于金属/介电涂层HGW的单一介电膜设计的掺入,但是最近的研究专注于开发交替的低/高折射率多层介电薄膜叠层,用于进一步传输损耗减少。在光学官能的硫化镉和HGW中沉积的持续进展允许同时增加薄膜质量和更大的膜厚度控制,以便在红外波长下提高反射率的这种多层堆叠设计。本研究重点介绍了这种多层叠层涂覆波导的理论和实践考虑,并提出了一种新的结果,包括多层堆叠薄膜材料,IR光谱分析和IR激光衰减测量的薄膜生长动力学。彻底呈现掺入逐渐交替硫化镉和铅硫化物介电薄膜对近红外区域中的下一代电介质薄膜叠层涂覆的HgWs的光学性质的效果。简要讨论将基于金属硫化物薄膜掺入金属硫化物薄膜的这种介电多层叠层涂层的含义用于从光谱学的范围内使用的应用中的应用,以高激光动力输送。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号