Laser Induced Damage in Optical Materials: Proceedings of a Symposium Sponsored by the American Society for Testing and Materials and by the National Bureau of StandardsU.S. Department of Commerce, National Bureau of Standards, 1989 |
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absorbing inclusions absorption Alamos approximately BaF2 birefringence Boulder Damage Symposium BRDF CaF2 cavity cerium chamber coefficient crystal curve Damage in Optical damage testing damage threshold defects density dependence deposited detector diameter dielectric dye laser effect electron avalanche emission excimer excimer laser experimental F-center fluence free electron fused silica glass Guenther heating impurities incident increase intensity interface ionization irradiation J/cm² Laboratory laser beam laser damage threshold Laser Induced Damage laser irradiation laser pulse Livermore measured MgF2 mirror morphology multiphoton Nd:YAG nonlinear observed optical coatings Optical Materials P.O. Box parameters particle peak photodiodes photon Phys polished pulse width pump radiation reflectance reflectivity loss reflectors refractive index sample scan scatter shots shown in figure shows SiO2 slab spectra sputtering stress structure substrate surface technique temperature thermal explosion thickness thin films TiO2 transient values wavelength zirconia
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iv. lappuse - Certain commercial equipment, instruments, or materials are identified in this paper in order to adequately specify the experimental procedure. Such identification does not imply recommendation or endorsement by the National Institute of Standards and Technology, nor does it imply that the materials or equipment identified are necessarily the best available for the purpose.
334. lappuse - Laboratory is operated by Battelle Memorial Institute for the US Department of Energy under contract DE-AC0676RLO 1830.