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The effect of temporal fluctuations in r0 on high-resolution observations

机译:R0对高分辨率观测的时间波动的影响

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Previous experimental measurements and theoretical modelling indicate that atmospheric turbulence is expected to show intermittency (or "clumpiness"). The impact that this intermittency has on simulated adaptive optics (AO) and Lucky Imaging (LI) performance is assessed in this SPIE contribution using simulated phase screens with Von Karman power spectra which incorporate turbulent intermittency. The statistics of the intermittency model used are based as closely as possible on astronomical seeing measurements at real observatories. The performance of realistic AO correction of large Taylor screens with intermittent turbulence is compared directly with the performance given with traditional Gaussian random Taylor screens having the same Von Karman power spectrum. Also discussed is the improvement in performance which can be obtained by modifying the AO control parameters in response to the changing seeing conditions. Lucky Imaging simulations indicate that the performance of this method can be significantly improved under intermittent seeing.
机译:以前的实验测量和理论模型表明,大气湍流有望出现间歇性(或“clumpiness”)。的影响,这种间歇对模拟自适应光学(AO)和Lucky成像(LI)的性能在本SPIE贡献使用具有冯卡门功率谱了结合湍流间歇模拟相位屏评估。使用间歇模型的统计尽可能地基于在实际观测天文视测量。的大屏幕泰勒间歇湍流现实AO校正的性能与具有相同的冯卡门功率谱传​​统的高斯随机泰勒筛给出的性能直接进行比较。还讨论是可以通过响应于改变条件看到修改AO控制参数来获得性能改进。幸运成像模拟表明,该方法的性能可在间歇眼看来显著改善。

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