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Optical calibration and performance of the adaptive secondary mirror at the Magellan telescope

机译:麦哲伦望远镜的自适应副镜的光学校准和性能

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摘要

In this paper we describe the procedure for the optical calibration of large size deformable mirrors, acting as wavefront correctors for adaptive optics systems. Adaptive optics compensate the disturbance due to the atmospheric turbulence to restore the telescope resolution. We will showcase in particular the activities performed for the Adaptive Secondary Mirror (ASM) of the Magellan Adaptive Optics system (MagAO), which is an instrument for the 6.5 m Magellan Clay Telescope, located at Las Campanas Observatory, in Chile. The MagAO ASM calibration is part of the MagAO-2K project, a major MagAO upgrade that started in 2016 with the goal of boosting adaptive optics (AO) correction at visible wavelengths to image exoplanets. For the first time, the optical quality of MagAO mirror is reported. We describe the procedures developed to achieve high SNR interferometric measurements of the ASM modes under the presence of dome convection noise and telescope vibrations. These measurements were required to produce an improved control matrix with up to 500 modes to close the AO loop on sky with enhanced performances. An updated slaving algorithm was developed to improve the control of actuators vignetted by the central obscuration. The calibrations yielded also a new ASM flattening command, updating the one in use since the MagAO commissioning in 2013. With the new flattening command, a 22 nm RMS surface error was achieved. Finally, we present on-sky results showing the MagAO performance achieved with the new calibrations.
机译:在本文中,我们描述了对大尺寸可变形反射镜进行光学校准的过程,该过程可作为自适应光学系统的波前校正器。自适应光学器件可补偿由于大气湍流引起的干扰,以恢复望远镜的分辨率。我们将特别展示麦哲伦自适应光学系统(MagAO)的自适应辅助镜(ASM)的活动,该系统是位于智利拉斯坎帕纳斯天文台的6.5μm麦哲伦粘土望远镜的仪器。 MagAO ASM校准是MagAO-2K项目的一部分,该项目是MagAO的一项重大升级,始于2016年,旨在将可见光波长的自适应光学(AO)校正提高到系外行星。首次报道了MagAO镜的光学质量。我们描述了在存在圆顶对流噪声和望远镜振动的情况下为实现ASM模式的高SNR干涉测量而开发的程序。需要进行这些测量才能产生具有多达500种模式的改进控制矩阵,从而以增强的性能关闭天空上的AO环路。开发了一种更新的从动算法,以改善由中央遮挡物渐晕的致动器的控制。校准还产生了一个新的ASM平坦化命令,该命令自2013年MagAO调试以来一直在使用中进行更新。通过新的平坦化命令,实现了22 nm RMS的表面误差。最后,我们提供了天空结果,显示了使用新校准获得的MagAO性能。

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