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Modified porous silica antireflective coatings with laser damage resistance for Ti:sapphire 被引量:1

Modified porous silica antireflective coatings with laser damage resistance for Ti:sapphire
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摘要 Porous SiO2 antireflective (AR) coatings are prepared from the colloidal silica solution modified with methyltriethoxysilane (MTES) based on the sol-gel route. The viscosity of modified silica suspensions changes but their stability keeps when MTES is introduced. The refractive indices of modified coatings vary little after bake treatment from 100 to 150℃. The modified silica coatings on Ti:sapphire crystal, owning good homogeneity, display prominent antireflective effect within the laser output waveband (750-850 nm) of Ti:sapphire lasers, with average transmission above 98.6%, and own laser induced damage thresholds (LIDTs) of more than 2.2 J/cm2 at 800 nm with the pulse duration of 300 ps. Porous SiO2 antireflective (AR) coatings are prepared from the colloidal silica solution modified with methyltriethoxysilane (MTES) based on the sol-gel route. The viscosity of modified silica suspensions changes but their stability keeps when MTES is introduced. The refractive indices of modified coatings vary little after bake treatment from 100 to 150℃. The modified silica coatings on Ti:sapphire crystal, owning good homogeneity, display prominent antireflective effect within the laser output waveband (750-850 nm) of Ti:sapphire lasers, with average transmission above 98.6%, and own laser induced damage thresholds (LIDTs) of more than 2.2 J/cm2 at 800 nm with the pulse duration of 300 ps.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2005年第4期244-246,共3页 中国光学快报(英文版)
基金 This work was supported by the High-Tech Research and Development Program of China under Grant No.8638042.
关键词 Antireflection coatings Atomic force microscopy Inertial confinement fusion Laser damage Morphology Porous materials SAPPHIRE Silica SOL GELS Stability Surface treatment Suspensions (fluids) Titanium Viscosity Antireflection coatings Atomic force microscopy Inertial confinement fusion Laser damage Morphology Porous materials Sapphire Silica Sol gels Stability Surface treatment Suspensions (fluids) Titanium Viscosity
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