Parametric study of laser-induced surface damage density measurements: Toward reproducibility
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Laurent Lamaignère | Jean-Christophe Poncetta | Herve Bercegol | Roger Courchinoux | T. Donval | Bertrand Bertussi | Stéphane Reyné | M. Balas
[1] Mark R. Kozlowski,et al. Current 3-ω large optic test procedures and data analysis for the quality assurance of National Ignition Facility optics , 1999, Laser Damage.
[2] Ian D. Hutcheon,et al. Morphology and microstructure in fused silica induced by high fluence ultraviolet 3ω (355 nm) laser pulses , 2006 .
[3] Gerard Raze,et al. The impact of laser damage on the lifetime of optical components in fusion lasers , 2004, SPIE Laser Damage.
[4] Michael D. Feit,et al. Growth of laser damage in SiO2 under multiple wavelength irradiation , 2005, SPIE Laser Damage.
[5] Jean-Luc Rullier,et al. Initiation of laser-induced damage sites in fused silica optical components. , 2009, Optics express.
[6] P. Grua,et al. Progress in the understanding of fracture related laser damage of fused silica , 2007, SPIE Laser Damage.
[7] Jean-Christophe Poncetta,et al. Computer-controlled measurements of laser-induced damage statistics on large optics , 2005, SPIE Laser Damage.
[8] Laurent Lamaignère,et al. Laser damage phenomena relevant to the design and operation of an ICF laser driver , 2008 .
[9] Laurent Lamaignère,et al. Filamentation and surface damage in fused silica with single-mode and multi-mode pulses , 2005, SPIE Laser Damage.
[10] L. Lamaignère,et al. An accurate, repeatable, and well characterized measurement of laser damage density of optical materials. , 2007, The Review of scientific instruments.
[11] Jérôme Néauport,et al. Concerning the impact of polishing induced contamination of fused silica optics on the laser-induced damage density at 351 nm , 2008 .
[12] M. Loiseau,et al. Effects of wavelengths combination on initiation and growth of laser-induced surface damage in SiO2 , 2007, SPIE Laser Damage.
[13] Laurent Lamaignère,et al. Self-focusing and surface damage in fused-silica windows of variable thickness with UV nanosecond pulses , 2004, SPIE Laser Damage.
[14] P. Miller,et al. Sub-surface mechanical damage distributions during grinding of fused silica , 2005 .
[15] Christopher W. Carr,et al. Effect of temporal pulse shape on optical damage , 2006 .
[16] J. Néauport,et al. Polishing-induced contamination of fused silica optics and laser induced damage density at 351 nm. , 2005, Optics express.
[17] Michael J. Runkel,et al. Overview of raster scanning for ICF-class laser optics , 2003, SPIE Laser Damage.