Morphological and damage growth characteristics of shell-type damage of fused silica optics induced by ultraviolet laser pulses
Author:
Funder
National Natural Science Foundation of China
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics,Engineering (miscellaneous),Electrical and Electronic Engineering
Reference22 articles.
1. Material response during nanosecond laser induced breakdown inside of the exit surface of fused silica
2. Damage threshold influenced by the high absorption defect at the film–substrate interface under ultraviolet laser irradiation
3. Damage on fused silica optics caused by laser ablation of surface-bound microparticles
4. Effect of polishing process on silica surface laser-induced damage threshold at 355 nm
5. Fracture-induced subbandgap absorption as a precursor to optical damage on fused silica surfaces
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1. Subsurface damage model in single and double scratching of fused silica with a blunt indenter;International Journal of Mechanical Sciences;2023-07
2. Nanoprecision controllable compliant technology for fabricating aspherical surfaces;SCIENTIA SINICA Technologica;2023-07-01
3. Micron-size bubble defects in fused silica and its laser induced damage near 355 nm;Ceramics International;2023-04
4. Effect of Laser-Induced Damage on Bending Strength Weakening of Fused Silica Glass and its Safety Design;Journal of Inorganic Materials;2022
5. Dichroic laser mirrors with mixture layers and sandwich-like-structure interfaces;Photonics Research;2021-01-27
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