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Atmospheric turbulence profiling using multiple laser star wavefront sensors.

机译:使用多个激光星形波阵面传感器的大气湍流曲线。

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摘要

This paper describes the data pre-processing and reduction methods together with SLOpe Detection And Ranging (SLODAR) analysis and wind profiling techniques for the Gemini South Multi-Conjugate Adaptive Optics System (GeMS).udThe wavefront gradient measurements of the five GeMS Shack–Hartmann sensors, each pointing to a laser guide star, are combined with the deformable mirror (DM) commands sent to three DMs optically conjugated at 0, 4.5 and 9 km in order to reconstruct pseudo-open loop slopes.udThese pseudo-open loop slopes are then used to reconstruct atmospheric turbulence profiles, based on the SLODAR and wind-profiling methods. We introduce the SLODAR method, and how it has been adapted to work in a closed-loop, multi-laser guide star system. We show that our method allows characterizing the turbulence of up to 16 layers for altitudes spanning from 0 to 19 km. The data pre-processing and reduction methods are described, and results obtained from observations made in 2011 are presented. The wind profiling analysis is shown to be a powerful technique not only for characterizing the turbulence intensity, wind direction and speed, but also as it can provide a verification tool for SLODAR results. Finally, problems such as the fratricide effect in multiple laser systems due to Rayleigh scattering, centroid gain variations, and limitations of the method are also addressed.
机译:本文介绍了Gemini South多共轭自适应光学系统(GeMS)的数据预处理和归约方法,以及SLOpe检测和测距(SLODAR)分析和风廓线技术。 ud五个GeMS棚屋的波前梯度测量将每个指向激光制导星的Hartmann传感器与发送到三个以0、4.5和9 km光学共轭的DM的可变形反射镜(DM)命令组合在一起,以重建伪开环斜率。然后,根据SLODAR和风廓线方法,利用斜率重建大气湍流廓线。我们介绍了SLODAR方法,以及它如何适应于在闭环,多激光制导星系统中工作。我们表明,对于从0到19 km的高度,我们的方法可以表征多达16层的湍流。描述了数据预处理和归约方法,并介绍了从2011年的观察获得的结果。风廓线分析被证明是一种强大的技术,不仅可以表征湍流强度,风向和速度,还可以为SLODAR结果提供验证工具。最后,还解决了由于瑞利散射,质心增益变化以及该方法的局限性而导致的多个激光系统中的杀伤效应。

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