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首页> 外文期刊>The astronomical journal >Laser-only Adaptive Optics Achieves Significant Image Quality Gains Compared to Seeing-limited Observations over the Entire Sky
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Laser-only Adaptive Optics Achieves Significant Image Quality Gains Compared to Seeing-limited Observations over the Entire Sky

机译:与在整个天空范围内只能看到有限的观察结果相比,仅使用激光的自适应光学装置可获得显着的图像质量增益

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Adaptive optics laser guide-star systems perform atmospheric correction of stellar wavefronts in two parts: stellar tip-tilt and high-spatial-order laser correction. The requirement of a sufficiently bright guide star in the field-ofview to correct tip-tilt limits sky coverage. In this paper, we show an improvement to effective seeing without the need for nearby bright stars, enabling full sky coverage by performing only laser-assisted wavefront correction. We used Robo-AO, the first robotic AO system, to comprehensively demonstrate this laser-only correction. We analyze observations from four years of efficient robotic operation covering 15000 targets and 42000 observations, each realizing different seeing conditions. Using an autoguider (or a post-processing software equivalent) and the laser to improve effective seeing independent of the brightness of a target, Robo-AO observations show a 39%?±?19% improvement to effective FWHM, without any tip-tilt correction. We also demonstrate that 50% encircled energy performance without tip-tilt correction remains comparable to diffraction-limited, standard Robo-AO performance. Faint-target science programs primarily limited by 50% encircled energy (e.g., those employing integral field spectrographs placed behind the AO system) may see significant benefits to sky coverage from employing laser-only AO.
机译:自适应光学激光制导系统在两个部分执行恒星波前的大气校正:恒星尖端倾斜和高空间阶激光校正。视场中需要足够明亮的引导星以校正倾斜角度,这会限制天空覆盖范围。在本文中,我们展示了有效观察的改进,而无需附近的明亮恒星,通过仅执行激光辅助的波前校正就可以实现全天空覆盖。我们使用了第一个机器人AO系统Robo-AO,全面演示了这种仅激光校正。我们从四年有效的机器人操作中分析了15,000个目标和42000个观测值,每个观测值实现了不同的观察条件。使用自动导引器(或等效的后处理软件)和激光来提高有效观察效果而不受目标亮度的影响,Robo-AO观测结果显示有效FWHM改善了39%±19%,而没有任何倾斜更正。我们还证明,没有倾斜校正的50%环绕能量性能仍可与衍射极限标准Robo-AO性能媲美。主要受50%环绕能量限制的微弱目标科学计划(例如,那些使用放置在AO系统后面的积分场光谱仪的计划)可能会因采用仅激光的AO而对天空覆盖产生重大好处。

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