Laser-induced damage tests based on a marker-based watershed algorithm with gray control

Author:

Guo Yajing,Tang Shunxing,Jiang Xiuqing,Peng Yujie,Zhu Baoqiang,Lin Zunqi

Abstract

Abstract An effective damage test method based on a marker-based watershed algorithm with gray control (MWGC) is proposed to study the properties of damage induced by near-field laser irradiation for large-aperture laser facilities. Damage tests were performed on fused silica samples and information on the size of damage sites was obtained by this new algorithm, which can effectively suppress the issue of over-segmentation of images resulting from non-uniform illumination in dark-field imaging. Experimental analysis and results show that the lateral damage growth on the exit surface is exponential, and the number of damage sites decreases sharply with damage site size in the damage site distribution statistics. The average damage growth coefficients fitted according to the experimental results for Corning-7980 and Heraeus-Suprasil 312 samples at 351 nm are $\def \xmlpi #1{}\def \mathsfbi #1{\boldsymbol {\mathsf {#1}}}\let \le =\leqslant \let \leq =\leqslant \let \ge =\geqslant \let \geq =\geqslant \def \Pr {\mathit {Pr}}\def \Fr {\mathit {Fr}}\def \Rey {\mathit {Re}}1.10 \pm 0.31$ and $0.60 \pm 0.09$ , respectively.

Publisher

Cambridge University Press (CUP)

Subject

Nuclear Energy and Engineering,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Growth of laser damage in fused silica and CaF2 under 263 nm laser irradiation;Applied Physics B;2024-08

2. SG II Comprehensive Experimental Facility;CHIN J LASERS;2024

3. Laser damage on large aperture triple frequency crystal optics in high power laser system;Pacific Rim Laser Damage 2019: Optical Materials for High-Power Lasers;2019-07-08

4. Laser damage and damage performance caused by near-field of final optics assembles for high power laser system;Pacific Rim Laser Damage 2019: Optical Materials for High-Power Lasers;2019-07-08

5. Status and development of high-power laser facilities at the NLHPLP;High Power Laser Science and Engineering;2018

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