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ShaneAO: an enhanced adaptive optics and IR imaging system for the Lick Observatory 3-meter telescope

机译:Shaneao:用于Lick Observatory 3米望远镜的增强自适应光学和IR成像系统

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The Lick Observatory 3-meter telescope has a history of serving as a testbed for innovative adaptive optics techniques.In 1996, it became one of the first astronomical observatories to employ laser guide star (LGS) adaptive optics as afacility instrument available to the astronomy community. Work on a second-generation LGS adaptive optics system,ShaneAO, is well underway, with plans to deploy on telescope in 2013. In this paper we discuss key design features andimplementation plans for the ShaneAO adaptive optics system. Once again, the Shane 3-m will host a number of newtechniques and technologies vital to the development of future adaptive optics systems on larger telescopes. Included is awoofer-tweeter based wavefront correction system incorporating a voice-coil actuated, low spatial and temporalbandwidth, high stroke deformable mirror in conjunction with a high order, high bandwidth MEMs deformable mirror.The existing dye laser, in operation since 1996, will be replaced with a fiber laser recently developed at LawrenceLivermore National Laboratories. The system will also incorporate a high-sensitivity, high bandwidth wavefront sensorcamera. Enhanced IR performance will be achieved by replacing the existing PICNIC infrared array with an Hawaii2RG. The updated ShaneAO system will provide opportunities to test predictive control algorithms for adaptive optics.Capabilities for astronomical spectroscopy, polarimetry, and visible-light adaptive optical astronomy will be supported.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:Lick Observatory 3米望远镜具有作为创新自适应光学技术的测试平台的历史。1996年,它成为使用激光导航星(LGS)自适应光学器件的第一个天文观测器之一,作为用于天文社区的可用仪器。在Shaneao的第二代LGS自适应光学系统上工作,在2013年,计划在望远镜上部署望远镜。在本文中,我们讨论了Shaneao Adaptive Optive Optive Octics系统的关键设计。再一次,Shane 3-M将举办许多纽金斯和技术对于在较大望远镜上的未来自适应光学系统开发至关重要。包括的基于Waver-Tweeter的波前校正系统包括致动,低空间和时间带宽,高行程可变形镜,与高阶,高带宽MEMS可变形镜。现有的染料激光器,自1996年以来运行,将是最近在Lawrencelivermore国家实验室开发的光纤激光器取代。该系统还将包含高灵敏度,高带宽波前传感器景观。通过用夏威夷夏威夷将现有的野餐红外数组替换现有的野餐红外数组来实现增强的IR性能。更新的Shaneao系统将提供测试自适应光学器件的预测控制算法的机会。用于天文学光谱,偏振谱和可见光的自适应光学天文学的加法能力。©(2012)光学仪表工程师的版权协会(SPIE)。仅供个人使用的摘要下载。

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