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Determination of the optical turbulence parameters from the adaptive optics telemetry: critical analysis and on-sky validation

机译:从自适应光学遥测中确定光湍流参数:批判性分析与天空验证

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摘要

It has been demonstrated by several authors that the optical turbulence parameters associated with a given adaptive optics (AO) run-the seeing angle and outer scale-can be determined from a statistical analysis of the commands of the system's deformable mirror (DM). The higher the accuracy on these parameters, the more we can make use of them, allowing for instance a better estimation of the seeing statistics at the telescope location or a more accurate assessment of the performance of the AO system. In the context of a point spread function reconstruction project (PSF-R) for the W. M. Keck observatory AO system, we decided to identify, in the most exhaustive way, all the sources of systematic and random errors affecting the determination of the seeing angle and outer scale from the DM telemetry, and find ways to compensate/mitigate these errors to keep them under 10%. The seeing estimated using our improved DM-seeing method was compared with more than 70 nearly simultaneous seeing measurements from open-loop PSFs on the same optical axis, and with independent seeing-monitor measurements acquired at the same time but far from the telescope (DIMM/MASS): the correlation with the open-loop PSF is very good (the error is about 10%), validating the DM-seeing method for accurate seeing determination, while it is weak and sometimes completely uncorrelated with the DIMM/MASS seeing monitor data. We concluded that DM-based seeing can be very accurate if all the error terms are considered in the DM data processing, but that seeing taken from non-collocated seeing monitors is of no use even when moderate accuracy is required. (C) 2018 Optical Society of America
机译:若干作者已经证明了与给定自适应光学(AO)运行相关联的光湍流参数 - 可以根据系统可变形镜(DM)的命令的统计分析来确定。这些参数的准确性越高,我们越多,可以利用它们,允许更好地估计望远镜位置的看到统计数据或更准确地评估AO系统的性能。在点扩散功能重建项目(PSF-R)的上下文中,我们决定以最穷的方式识别,所有系统和随机误差的源,影响看到角度和的确定从DM遥测中的外级,并找到弥补/减轻这些错误的方法,以使其低于10%。使用我们改进的DM看法估计的观察与来自相同光轴上的开环PSF几乎同时看到的70多个估计,并且在同一时间内获得的独立看监视器测量,但远离望远镜(DIMM) /质量):与开环PSF的相关性非常好(误差约为10%),验证DM看法以进行准确的观察测定,虽然弱,但有时与DIMM /批量看到监视器完全不相关数据。我们得出结论,如果在DM数据处理中考虑所有错误项,则基于DM的SEEIN非常准确,但即使在需要中等精度时,也没有使用从非绑定的观察监视器。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第27期|共20页
  • 作者单位

    Univ Appl Sci Western Switzerland HEIG VD 1 Route Cheseaux CH-1401 Yverdon Switzerland;

    WM Keck Observ 65-1120 Mamalahoa Hwy Kamuela HI 96743 USA;

    Gemini Observ 670 Aohoku Pl Hilo HI 96720 USA;

    Gemini Observ 670 Aohoku Pl Hilo HI 96720 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
  • 关键词

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