首页> 外文会议>Advances in Adaptive Optics II pt.2 >A Laboratory Experiment for Demonstrating Post-Coronagraph Wave Front Sensing and Control for Extreme Adaptive Optics
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A Laboratory Experiment for Demonstrating Post-Coronagraph Wave Front Sensing and Control for Extreme Adaptive Optics

机译:演示日冕仪波前传感和极端自适应光学控制的实验室实验

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Direct detection of exo-planets from the ground will become a reality with the advent of a new class of extreme-adaptive optics instruments that will come on-line within the next few years. In particular, the Gemini Observatory will be developing the Gemini Planet Imager (GPI) that will be used to make direct observations of young exo-planets. One major technical challenge in reaching the requisite high contrast at small angles is the sensing and control of residual wave front errors after the starlight suppression system. This paper will discuss the nature of this problem, and our approach to the sensing and control task. We will describe a laboratory experiment whose purpose is to provide a means of validating our sensing techniques and control algorithms. The experimental demonstration of sensing and control will be described. Finally, we will comment on the applicability of this technique to other similar high-contrast instruments.
机译:随着新型极端自适应光学仪器的出现,从地面直接检测系外行星将成为现实,该光学仪器将在未来几年内投入使用。特别是,双子座天文台将开发双子座行星成像仪(GPI),将其用于直接观测年轻系外行星。在小角度上达到必要的高对比度的一项主要技术挑战是在星光抑制系统之后,感测和控制残留波阵面误差。本文将讨论此问题的性质,以及我们对传感和控制任务的处理方法。我们将描述一个实验室实验,目的是提供一种验证我们的传感技术和控制算法的方法。将描述感测和控制的实验演示。最后,我们将评论该技术对其他类似高对比度仪器的适用性。

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