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Proceedings Paper

Numerical simulation on 1 on 1 surface damage threshold test of fused SiO2 with Monte Carlo method
Author(s): Rongsheng Ba; Xinda Zhou; Yinbo Zheng; Jing Yuan; Lei Ding; Wenhong Li; Deqiang Yu; Bo Chen
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Paper Abstract

For researching the influence factors of the damage threshold test results, the 1 on 1 test program and data processing on fused SiO2 optical elements was numerically simulated with Monte Carlo method. The influence of the surface defect density and the target test spots area for the test results of damage threshold was studied. The numerical simulation results indicate that the damage threshold of optical elements can't be accurately evaluated with 1 on 1 test program if the surface defects have the characteristics of both low density and low damage threshold. The zero-probability damage threshold isn't equal to the minimum energy density when the laser induced damage of optical element appears. This work is helpful for understanding the 1 on 1 test result and has important reference value in the actual damage threshold test of optical elements using 1 on 1 test method.

Paper Details

Date Published: 14 July 2015
PDF: 6 pages
Proc. SPIE 9532, Pacific Rim Laser Damage 2015: Optical Materials for High-Power Lasers, 953208 (14 July 2015); doi: 10.1117/12.2186016
Show Author Affiliations
Rongsheng Ba, China Academy of Engineering Physics (China)
Xinda Zhou, China Academy of Engineering Physics (China)
Yinbo Zheng, China Academy of Engineering Physics (China)
Jing Yuan, China Academy of Engineering Physics (China)
Lei Ding, China Academy of Engineering Physics (China)
Wenhong Li, China Academy of Engineering Physics (China)
Deqiang Yu, China Academy of Engineering Physics (China)
Bo Chen, China Academy of Engineering Physics (China)


Published in SPIE Proceedings Vol. 9532:
Pacific Rim Laser Damage 2015: Optical Materials for High-Power Lasers
Jianda Shao; Takahisa Jitsuno; Wolfgang Rudolph; Meiping Zhu, Editor(s)

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