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首页> 外文期刊>Publications of the Astronomical Society of the Pacific >Thermal Performance Enhancement of Adaptive Optics by Use of a Deformable Secondary Mirror
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Thermal Performance Enhancement of Adaptive Optics by Use of a Deformable Secondary Mirror

机译:通过使用可变形次镜提高自适应光学器件的热性能

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An adaptive optics system is being built for the 6.5 m Multiple Mirror Telescope (MMT) conversion on Mount Hopkins for diffraction-limited observations in the near-infrared. At the heart of the system is a deformable secondary mirror which introduces corrections to the optical wavefront. By compensating these errors at the telescope's secondary, the system has been optimized for low thermal emissivity and high photon throughput. The scientific productivity of the facility will thereby be enhanced in comparison with a telescope equipped with more conventional adaptive optics. The Large Binocular Telescope under construction on Mount Graham will also use adaptive secondary mirrors. This paper explores the benefit to both facilities in terms of the integration time required to achieve a given signal-to-noise ratio. The gain is found to be substantial in the photometric bands K, L, M, and N.
机译:正在为霍普金斯山上的6.5 m多镜望远镜(MMT)转换建立一个自适应光学系统,用于近红外的衍射极限观测。该系统的核心是可变形的辅助反射镜,可对光波前进行校正。通过补偿望远镜次级的这些误差,该系统已针对低热发射率和高光子通量进行了优化。与配备了更多常规自适应光学器件的望远镜相比,该设施的科学生产率将因此得到提高。格雷厄姆山上正在建设的大型双筒望远镜也将使用自适应辅助镜。本文就实现给定信噪比所需的积分时间探讨了这两种设备的优势。发现该增益在光度学波段K,L,M和N中很大。

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