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Application of the General Extended-Object Wavefront Sensor into Aberration Correction of Lasers
Li CW(李常伟); Lu YT(陆彦婷); Zhang SJ(张思炯)
2022-11
发表期刊AIAA JOURNAL
卷号60期号:11页码:6076-6082
摘要

Thermal aberrations are the main impediments for high-energy transverse multimode lasers to achieve high brightness and beam qualities. To address this issue using adaptive optics, traditional wavefront sensing methods have great limitations for aberration correction in high-energy transverse multimode lasers, because these lasers are no longer point sources. The general extended-object wavefront sensor (GEWFS) invented by the authors can work with extended sources in real time, and it is highly suitable to solve this problem. The application of the GEWFS into the compensation of thermal aberrations in a high-energy laser is preliminarily investigated by means of a simulation experiment. In this simulation experiment, a transverse multimode laser diode simulates a high-energy laser, a and phase plate thermal aberrations, which is compensated by a closed-loop adaptive optics system mainly composed of the GEWFS and a membrane deformable mirror. Simulation experimental results show that the peak intensity of the laser beam image is improved about 2.35 times, and the approximate Strehl ratio of the laser system attained 0.90. The results indicate that the GEWFS is simple and accurate enough for wavefront sensing from extended sources, and it will greatly expand the application fields of adaptive optics.

学科领域天文技术与方法
文献类型期刊论文
条目标识符http://ir.niaot.ac.cn/handle/114a32/1995
专题期刊论文
中国科学院南京天文光学技术研究所知识成果
作者单位南京天文光学技术研究所
推荐引用方式
GB/T 7714
Li CW,Lu YT,Zhang SJ. Application of the General Extended-Object Wavefront Sensor into Aberration Correction of Lasers[J]. AIAA JOURNAL,2022,60(11):6076-6082.
APA Li CW,Lu YT,&Zhang SJ.(2022).Application of the General Extended-Object Wavefront Sensor into Aberration Correction of Lasers.AIAA JOURNAL,60(11),6076-6082.
MLA Li CW,et al."Application of the General Extended-Object Wavefront Sensor into Aberration Correction of Lasers".AIAA JOURNAL 60.11(2022):6076-6082.
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