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WIYN active optics: a platform for AO

机译:WIYN有源光学器件:AO平台

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Abstract: The WIYN 3.5 meter telescope is situated on the southwest ridge of Kitt Peak yielding excellent atmosphere seeing conditions. As such, the telescope and enclosure design was directed towards exploiting this feature. The primary mirror was spun cast and figured by the Steward Observatory Mirror Laboratory and the secondary mirror by Contraves. In both cases the performance exceeded the design specifications. The borosilicate primary is actively temperature controlled to within 0.2 C of the desired temperature, typically 0.5 degrees C below the ambient air. The telescope structure is also temperature controlled and the enclosure is opened to the outside ion all sides, which all heat sources are vented to ducts carrying air downwind of the facility. The primary mirror is actively controlled for low order aberrations by 66 axial actuators which are adjusted open loop via force matrix look-up tables and closed loop via real-time wavefront curvature sensing measurements. The active optics also included real-time collimation and focus control. The telescope drive and guider are capable of providing tracking to a few hundredths of a second of arc. By employing active telescope control at this level, it is possible to maintain telescope and local wavefront distortion to a level where atmospheric effects dominate the image quality. Since a significant fraction of the power in the atmospheric disturbances is contained in image motion the first step in adaptive optics control will be simple tip tilt. Studies of higher order AO system are being carried out, as well as additional test characterizing the telescope and site. It is intended to continue such studies in an attempt to establish long term variances. !8
机译:摘要:WIYN 3.5米望远镜位于基特峰的西南脊,具有极好的大气观测条件。因此,望远镜和外壳设计旨在利用此功能。主镜由Steward天文台镜实验室旋转铸造,并由Contraves制作副镜。在这两种情况下,性能都超出了设计规格。积极地将硼硅酸盐一次温度控制在所需温度的0.2 C以内,通常比环境空气低0.5°C。望远镜的结构也是受温度控制的,外壳的所有侧面都向外界开放,所有热源都排放到风道中,风道向设施的下游方向输送空气。通过66个轴向致动器主动控制主镜的低阶像差,这些轴向致动器通过力矩阵查找表进行开环调整,并通过实时波前曲率传感测量进行闭环调整。有源光学器件还包括实时准直和聚焦控制。望远镜驱动器和导向器能够提供到百分之一秒弧度的跟踪。通过在此级别上采用主动望远镜控制,可以将望远镜和局部波前畸变保持在大气影响图像质量的水平。由于大气干扰中大部分功率都包含在图像运动中,因此自适应光学控制的第一步将是简单的倾斜倾斜。目前正在对高阶AO系统进行研究,并进行表征望远镜和场地的附加测试。旨在继续进行此类研究,以建立长期差异。 !8

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