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Dive into the research topics where Zhou Xinda is active.

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Featured researches published by Zhou Xinda.


Optics Express | 2013

Subsurface defects of fused silica optics and laser induced damage at 351 nm

Liu Hongjie; Huang Jin; Wang Fengrui; Zhou Xinda; Ye Xin; Zhou Xiaoyan; Sun Laixi; Jiang Xiaodong; Sui Zhan; Zheng Wanguo

Many kinds of subsurface defects are always present together in the subsurface of fused silica optics. It is imperfect that only one kind of defects is isolated to investigate its impact on laser damage. Therefore it is necessary to investigate the impact of subsurface defects on laser induced damage of fused silica optics with a comprehensive vision. In this work, we choose the fused silica samples manufactured by different vendors to characterize subsurface defects and measure laser induced damage. Contamination defects, subsurface damage (SSD), optical-thermal absorption and hardness of fused silica surface are characterized with time-of-flight secondary ion mass spectrometry (TOF-SIMS), fluorescence microscopy, photo-thermal common-path interferometer and fully automatic micro-hardness tester respectively. Laser induced damage threshold and damage density are measured by 351 nm nanosecond pulse laser. The correlations existing between defects and laser induced damage are analyzed. The results show that Cerium element and SSD both have a good correlation with laser-induced damage thresholds and damage density. Research results evaluate process technology of fused silica optics in China at present. Furthermore, the results can provide technique support for improving laser induced damage performance of fused silica.


Chinese Physics Letters | 2011

Simulation of Light Intensification Induced by Defects of Polished Fused Silica

Wang Fengrui; Liu Hongjie; Huang Jin; Zhou Xinda; Jiang Xiaodong; Wu Wei-Dong; Zheng Wanguo; Ju Xin

Light intensity distribution in the vicinity of inclusions and etched cracks in polished fused silica at wavelength scale are simulated by using the finite-difference time-domain algorithm. Light intensity enhancement factor as functions of diameter and refractive index of inclusions are investigated, more than 10 times that of incident beam is obtained in the simulation. We model the etched crack in close proximity to a real structure, which is characterized by AFM. We find that the peak light intensity of the crack is a function of its cross sectional breadth depth ratio, providing good hints for the effective processing of fused silica samples to improve the damage threshold.


international conference on electronics and optoelectronics | 2011

Effects of localized CO 2 laser damage repair on downstream beam qualities

Liu Hongjie; Wang Fengrui; Huang Jin; Zhou Xinda; Jiang Xiaodong; Wu Wei-Dong; Zheng Wanguo

The diffraction patterns as a function of propagation distance from different parameters of CO2 laser repair cater are calculated by using a fast-Fourier-transform beam propagation code. The results show that the outer rim of sites leads to laser focusing and causes the more intense downstream modulation, the depth of cater affect the intensity of peaks slightly, and the diameter of cater has no influence on the intensity of peaks. By controlling the rim structure of the mitigation sites, downstream modulation introduced by CO2 laser repair cater can be declined and decreases the optics damage risk effectively.


Archive | 2013

Method for improving damage threshold of fused quartz optical element

Ye Xin; Jiang Xiaodong; Huang Jin; Liu Hongjie; Sun Laixi; Zhou Xinda; Wang Fengrui; Zhou Xiaoyan; Geng Feng


Archive | 2016

Three -dimensional appearance measuring device of panorama based on stripe projection

Zhang Lin; Ma Hua; Jiang Hongzhen; Ren Huan; Chen Bo; Yang Yi; Ma Yurong; Shi Zhendong; Yuan Quan; Feng Xiaoxuan; Yang Xiaoyu; Ma Ke; Li Dong; Liu Yong; Ba Rongsheng; Zhou Xinda; Zheng Yinbo


Archive | 2016

Real -time efficient nonlinearity spectral characteristic measuring device

Zhang Lin; Ma Yurong; Yang Yi; Ren Huan; Shi Zhendong; Ma Hua; Yuan Quan; Feng Xiaoxuan; Chen Bo; Yang Xiaoyu; Ma Ke; Li Dong; Jiang Hongzhen; Liu Yong; Ba Rongsheng; Zhou Xinda; Zheng Yinbo


Archive | 2016

High depth of field surface defect detecting device of optical element of transmission type dual wavelength holography

Jiang Hongzhen; Zheng Fanglan; Liu Yong; Liu Xu; Li Dong; Yang Yi; Chen Zhu; Ren Huan; Zhang Lin; Zhou Xinda; Zheng Yinbo; Yuan Quan; Shi Zhendong; Ba Rongsheng; Li Wenhong; Yu Deqiang; Yuan Jing; Ding Lei; Ma Ke; Ma Yurong; Feng Xiaoxuan; Chen Bo; Yang Xiaoyu


Archive | 2016

System for testing damage threshold of optical element surface and test method

Zhou Xinda; Ding Lei; Zheng Yinbo; Ba Rongsheng; Yuan Jing; Jiang Hongzhen; Xu Honglei; Zhang Lin; Li Dong; Yang Yi; Yang Xiaoyu; Chen Bo; Chai Liqun; Zheng Wanguo


Archive | 2016

Real-time recording apparatus and method for colorful digital holographic image

Jiang Hongzhen; Liu Yong; Li Dong; Liu Xu; Zheng Fanglan; Zheng Yinbo; Yang Yi; Chen Zhu; Zhang Lin; Shi Zhendong; Yuan Quan; Ma Hua; Ma Yurong; Feng Xiaoxuan; Ma Ke; Ren Huan; Li Wenhong; Yu Deqiang; Ba Rongsheng; Zhou Xinda; Yuan Jing; Ding Lei; Chen Bo; Yang Xiaoyu


Archive | 2016

Non -linear spectral characteristic measuring device of nonlinearity photonics material

Zhang Lin; Yuan Quan; Jiang Hongzhen; Ren Huan; Chen Bo; Yang Yi; Ma Hua; Shi Zhendong; Ma Yurong; Feng Xiaoxuan; Yang Xiaoyu; Ma Ke; Li Dong; Liu Yong; Ba Rongsheng; Zhou Xinda; Zheng Yinbo

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Yang Yi

China Academy of Engineering Physics

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Zhang Lin

China Academy of Engineering Physics

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Huang Jin

China Academy of Engineering Physics

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Jiang Xiaodong

China Academy of Engineering Physics

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Liu Hongjie

China Academy of Engineering Physics

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Wang Fengrui

China Academy of Engineering Physics

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Ren Huan

China Academy of Engineering Physics

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Shi Zhendong

China Academy of Engineering Physics

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Zheng Wanguo

China Academy of Engineering Physics

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Ding Lei

Chinese Academy of Engineering

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