首页> 外文会议>Baeckaskog Workshop on Extremely Large Telescopes pt.1; 20030909-20030911; Baeckaskog Castle; SE >Active optics challenges of a thirty meter segmented mirror telescope
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Active optics challenges of a thirty meter segmented mirror telescope

机译:三十米分段镜望远镜的主动光学挑战

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Ground-based telescopes operate in a turbulent atmosphere that affects the optical path across the aperture by changing both the mirror positions (wind seeing) and the air refraction index in the light path (atmospheric seeing). In wide field observations, when adaptive optics is not feasible, active optics are the only means of minimizing the effects of wind buffeting. An integrated, dynamic model of wind buffeting, telescope structure, and optical performance was developed to investigate wind energy propagation into primary mirror modes and secondary mirror rigid body motion. Although the results showed! that the current level of wind modeling was not appropriate to decisively settle the need for optical feedback loops in active optics, the simulations strongly indicated the capability of a limited bandwidth edge sensor loop to maintain the continuity of the primary mirror inside the preliminary error budget. It was also found that the largest contributor to the wind seeing is image jitter, i.e. OPD tip/tilt.
机译:地基望远镜在湍流环境中运行,通过改变反射镜位置(风向观察)和光路中的空气折射率(从大气压观察)来影响穿过孔径的光路。在宽视场观测中,当自适应光学装置不可行时,有源光学装置是最小化风振效应的唯一方法。开发了一种集成的动态风振,望远镜结构和光学性能的模型,以研究风能传播到主镜模式和副镜刚体运动中的情况。虽然结果显示!当前的风建模水平不足以果断地解决有源光学系统中对光反馈回路的需求,该模拟强烈表明有限带宽边缘传感器回路能够在初步误差预算内维持主镜的连续性。还发现造成风阻的最大因素是图像抖动,即OPD尖端/倾斜。

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