Design of laser beam dump with high laser-induced-damage threshold
暂无分享,去创建一个
Fang Wang | Hongjie Liu | D. Hu | Xiao-Min Yuan | Zhufeng Shao | Yuan-fu Chen | Ye Tian | Yong Xiang | Tianran Zheng | Y. Xiang
[1] L. Divol,et al. Symmetric fielding of the largest diamond capsule implosions on the NIF , 2020 .
[2] Daniel Kramer,et al. Femtosecond laser damage resistance of beam dump materials for high-peak power laser systems , 2020 .
[3] C. W. Carr,et al. Damage performance of fused silica debris shield at the National Ignition Facility , 2019, Laser Damage.
[4] 郑天然 Zheng Tianran,et al. Designing method research of high-power laser absorber based on analysis of light field distribution characteristics , 2019, Infrared and Laser Engineering.
[5] J. Kaewkhao,et al. CuO, MnO 2 and Fe 2 O 3 doped biomass ash as silica source for glass production in Thailand , 2017 .
[6] Zaikui Xiang,et al. The research progress of large-aperture fused silica for high power laser , 2017, Selected Proceedings from CSOE.
[7] Eyal Feigenbaum,et al. Laser-matter coupling mechanisms governing particulate-induced damage on optical surfaces , 2016, Laser Damage.
[8] Stavros G. Demos,et al. Damage Mechanisms Avoided or Managed for NIF Large Optics , 2016 .
[9] K. R. Manes,et al. Description of the NIF Laser , 2016 .
[10] Michael J. Runkel,et al. Large Optics for the National Ignition Facility , 2016 .
[11] C D Boley,et al. Impact of laser-contaminant interaction on the performance of the protective capping layer of 1 ω high-reflection mirror coatings. , 2015, Applied optics.
[12] A. Manuel. ARC Stray Light Mitigation , 2015 .
[13] M. Farrell,et al. Fabrication Improvements of the Aluminum Unconverted Light Shields for the National Ignition Campaign , 2013 .
[14] Jeffrey Rowe,et al. Ghost analysis visualization techniques for complex systems: examples from the NIF final optics assembly , 1999, Other Conferences.
[15] S. Papernov,et al. Localized absorption effects during 351 nm, pulsed laser irradiation of dielectric multilayer thin films , 1997 .