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Increased sky coverage with optimal correction of tilt and tilt-anisoplanatism modes in laser-guide-star multiconjugate adaptive optics

机译:通过对激光导星多共轭自适应光学系统中的倾斜和倾斜各向异性平面模式进行最佳校正来提高天空覆盖率

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摘要

Laser-guide-star multiconjugate adaptive optics (MCAO) systems require natural guide stars (NGS) to measure tilt and tilt-anisoplanatism modes. Making optimal use of the limited number of photons coming from such, generally dim, sources is mandatory to obtain reasonable sky coverage, i.e., the probability of finding asterisms amenable to NGS wavefront (WF) sensing for a predefined WF error budget. This paper presents a Strehl-optimal (minimum residual variance) spatiotemporal reconstructor merging principles of modal atmospheric tomography and optimal stochastic control theory. Simulations of NFIRAOS, the first light MCAO system for the thirty-meter telescope, using ∼500 typical NGS asterisms, show that the minimum-variance (MV) controller delivers outstanding results, in particular for cases with relatively dim stars (down to magnitude 22 in the H-band), for which low-temporal frame rates (as low as 16 Hz) are required to integrate enough flux. Over all the cases tested ∼21  nm  rms median improvement in WF error can be achieved with the MV compared to the current baseline, a type-II controller based on a double integrator. This means that for a given level of tolerable residual WF error, the sky coverage is increased by roughly 10%, a quite significant figure. The improvement goes up to more than 20% when compared with a traditional single-integrator controller.
机译:激光制导星多共轭自适应光学(MCAO)系统需要自然制导星(NGS)来测量倾斜和倾斜各向异性平面模式。为了获得合理的天空覆盖范围,必须最佳利用来自此类(通常是昏暗)源的有限数量的光子,以获取合理的天空覆盖范围,即找到适合NGS波前(WF)感应以预定义WF错误预算的星空的可能性。本文提出了一种模态大气层析成像原理和最优随机控制理论的斯特雷尔最优(最小残留方差)时空重构器。 NFIRAOS是用于30米望远镜的第一个轻型MCAO系统,使用约500个典型NGS星空进行的模拟显示,最小方差(MV)控制器可提供出色的结果,尤其是对于恒星相对昏暗(小于22级)的情况在H波段),需要低时间帧速率(低至16 Hz)才能集成足够的通量。在所有测试的案例中,与当前的基线(基于双积分器的II型控制器)相比,使用MV可以实现WF误差中值改善21 nmnm rms。这意味着对于给定的可容忍残余WF误差水平,天空覆盖范围大约增加了10%,这是一个相当可观的数字。与传统的单积分器控制器相比,改进幅度高达20%以上。

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