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On-sky vibration environment for the Gemini Planet Imager and mitigation effort

机译:双子座行星成像器和缓解努力的天空振动环境

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The Gemini Planet Imager (GPI) entered on-sky commissioning and had its first-light at the Gemini South (GS) telescope in November 2013. GPI is an extreme adaptive optics (XAO), high-contrast imager and integral-field spectrograph dedicated to the direct detection of hot exo-planets down to a Jupiter mass. The performance of the apodized pupil Lyot coronagraph depends critically upon the residual wavefront error (design goal of 60nmRMS with <5 mas RMS tip/tilt), and therefore is most sensitive to vibration (internal or external) of Gemini's instrument suite. Excess vibration can be mitigated by a variety of methods such as passive or active dampening at the instrument or telescope structure or Kalman filtering of specific frequencies with the AO control loop. Understanding the sources, magnitudes and impact of vibration is key to mitigation. This paper gives an overview of related investigations based on instrument data (GPI AO module) as well as external data from accelerometer sensors placed at different locations on the GS telescope structure. We report the status of related mitigation efforts, and present corresponding results.
机译:Gemini Planet Imager(GPI)于2013年11月进入天空调试,并在Gemini South(GS)望远镜上进行了第一盏灯.GPI是一个极端的自适应光学(XAO),高对比度成像和集成场光谱仪专用直接检测到木星质量下的热外行星。减少的瞳孔Lyot调节件的性能尺寸统治性地依赖于残留的波前误差(60nmrms的设计目标,其中<5 mas rms尖端/倾斜),因此对Gemini的仪器套件的振动(内部或外部)最敏感。可以通过各种方法减轻多余的振动,例如仪器或望远镜结构的被动或主动抑制或与AO控制回路的特定频率的卡尔曼滤波。了解源,振动和振动的影响是缓解的关键。本文概述了基于仪器数据(GPI AO模块)的相关调查以及来自放置在GS望远镜结构上的不同位置的加速度计传感器的外部数据。我们报告了相关缓解努力的状态,并呈现了相应的结果。

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