Initiation of laser-induced damage sites in fused silica optical components.
暂无分享,去创建一个
Jean-Luc Rullier | Philippe Cormont | Stéphanie Palmier | Bertrand Bertussi | Philippe Legros | J. Rullier | P. Legros | B. Bertussi | P. Cormont | S. Palmier
[1] Stavros G Demos,et al. In situ monitoring of surface postprocessing in large-aperture fused silica optics with optical coherence tomography. , 2008, Applied optics.
[2] Ian D. Hutcheon,et al. Morphology and microstructure in fused silica induced by high fluence ultraviolet 3ω (355 nm) laser pulses , 2006 .
[3] D R Hall,et al. Localized CO2 laser damage repair of fused silica optics. , 2006, Applied optics.
[4] Michael D. Feit,et al. Methods for mitigating surface damage growth in NIF final optics , 2002, SPIE Laser Damage.
[5] Michael D. Feit,et al. Initiation, growth, and mitigation of UV-laser-induced damage in fused silica , 2002, SPIE Laser Damage.
[6] Manyalibo J. Matthews,et al. The effect of laser pulse duration on laser-induced damage in KDP and SiO2 , 2006, SPIE Laser Damage.
[7] Laurent Lamaignère,et al. Presentation and comparison of damage test procedures for fused silica and KDP crystals , 2008, Laser Damage.
[8] P. Grua,et al. Progress in the understanding of fracture related laser damage of fused silica , 2007, SPIE Laser Damage.
[9] Michael D. Feit,et al. Growth of laser-initiated damage in fused silica at 351 nm , 2001, SPIE Laser Damage.
[10] M. Andre,et al. The French Megajoule Laser Project (LMJ) , 1999 .
[11] Perry,et al. Laser-induced damage in dielectrics with nanosecond to subpicosecond pulses. , 1995, Physical review letters.
[12] Richard P. Hackel,et al. Mitigation of growth of laser initiated surface damage in fused silica using a 4.6-micron wavelength laser , 2007, SPIE Laser Damage.
[13] Michael D. Feit,et al. Growth of laser damage in fused silica: diameter to depth ratio , 2007, SPIE Laser Damage.
[14] Richard P. Hackel,et al. Design of a production process to enhance optical performance of 3ω optics , 2004, SPIE Laser Damage.
[15] Christopher W. Carr,et al. Effect of temporal pulse shape on optical damage , 2006 .
[16] Michel A. Josse,et al. Parametric study of the growth of damage sites on the rear surface of fused silica windows , 2003, SPIE Laser Damage.
[17] Laurent Gallais,et al. Optimization of a laser mitigation process in damaged fused silica , 2009 .
[18] Bertrand Bertussi,et al. SOCRATE: an optical bench dedicated to the understanding and improvement of a laser conditioning process. , 2006, Applied optics.
[19] S. Sutton,et al. National Ignition Facility laser performance status. , 2007, Applied optics.
[20] S. Palmier,et al. Effect of the temporal pulse duration on the initiation of damage sites on fused silica surfaces , 2008, Laser Damage.
[21] Stavros G Demos,et al. Investigation of processes leading to damage growth in optical materials for large-aperture lasers. , 2002, Applied optics.