Institutional Repository System Of Yunnan Observatories, CAS
Research on piston error sensing for segmented mirrors under atmospheric turbulence | |
Wang B(王斌)1; Jin ZY(金振宇)1; Dai YC(戴懿纯)1; Yang, DeHua2; Xu FY(许方宇)1 | |
发表期刊 | OPTICS EXPRESS |
2023-09-25 | |
卷号 | 31期号:20页码:33719-33731 |
DOI | 10.1364/OE.503337 |
产权排序 | 第1完成单位 |
收录类别 | EI |
摘要 | Large aperture ground-based segmented telescopes typically use electrical edge sensors to detect co-phase errors. However, complex observing environments can lead to zero-point drift of the edge sensors, making it challenging to maintain the long-term co-phase of the segmented primary mirror using only edge sensors. Therefore, employing optical piston error detection methods for short-term calibration of edge sensors can address the issue of zero-point drift in the sensors. However, atmospheric turbulence can affect calibration accuracy based on the observational target. To achieve high-precision calibration of electrical edge sensors, this study investigates the impact of atmospheric turbulence on optical piston error detection. Based on simulated results, it is found that the actual measured piston error in the presence of atmospheric turbulence is the difference between the average phases of the two segments. Subsequently, optical piston error detection experiments were conducted in a segmented mirror system under simulated turbulent conditions with varying turbulence intensities. Experimental studies have shown that the detection accuracy of the optical method is almost the same as without turbulence when using a detection aperture size that is 0.82 times the atmospheric coherence length and an exposure time of at least 40 ms. The root mean square of the cross-calibration is better than 3 nm. These experimental results indicate that under conditions of good atmospheric seeing, the optical piston error detection method can meet the short-term calibration requirements of edge sensors by setting reasonable detection area size and exposure time. It may even be possible to directly use optical detection methods to replace edge sensors for real-time detection of piston errors. (c) 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement |
资助项目 | Yunnan Provincial Science and Technology Department[202103AD50013] ; Yunnan Provincial Science and Technology Department[202105AB160001] ; Yunnan Provincial Science and Technology Department[202305AH 340002] ; National Natural Science Foundation of China[11833010] ; National Natural Science Foundation of China[12273109] |
项目资助者 | Yunnan Provincial Science and Technology Department[202103AD50013, 202105AB160001, 202305AH 340002] ; National Natural Science Foundation of China[11833010, 12273109] |
语种 | 英语 |
学科领域 | 天文学 ; 天文学其他学科 ; 机械工程 ; 仪器仪表技术 ; 光学技术与仪器 ; 天文仪器 |
文章类型 | Article |
出版者 | Optica Publishing Group |
出版地 | 2010 MASSACHUSETTS AVE NW, WASHINGTON, DC 20036 USA |
ISSN | 1094-4087 |
URL | 查看原文 |
WOS记录号 | WOS:001086248600001 |
WOS研究方向 | Optics |
WOS类目 | Optics |
关键词[WOS] | KECK TELESCOPES ; PHASE SCREEN ; SENSOR ; PERFORMANCE |
EI入藏号 | 20234214927611 |
EI主题词 | Atmospheric turbulence |
EI分类号 | 443.1 Atmospheric Properties - 612.1.1 Internal Combustion Engine Components - 631.1 Fluid Flow, General - 641.1 Thermodynamics - 741.3 Optical Devices and Systems - 921.6 Numerical Methods |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://ir.ynao.ac.cn/handle/114a53/26352 |
专题 | 天文技术实验室 |
通讯作者 | Jin ZY(金振宇) |
作者单位 | 1.Yunnan Observatories, Chinese Academy of Sciences, Kunming 650011, China; 2.Nanjing Institute of Astronomical Optics and Technology, Chinese Academy of Sciences, Nanjing 210042, China |
第一作者单位 | 中国科学院云南天文台 |
通讯作者单位 | 中国科学院云南天文台 |
推荐引用方式 GB/T 7714 | Wang B,Jin ZY,Dai YC,et al. Research on piston error sensing for segmented mirrors under atmospheric turbulence[J]. OPTICS EXPRESS,2023,31(20):33719-33731. |
APA | Wang B,Jin ZY,Dai YC,Yang, DeHua,&Xu FY.(2023).Research on piston error sensing for segmented mirrors under atmospheric turbulence.OPTICS EXPRESS,31(20),33719-33731. |
MLA | Wang B,et al."Research on piston error sensing for segmented mirrors under atmospheric turbulence".OPTICS EXPRESS 31.20(2023):33719-33731. |
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