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Characterization of an off-the-shelf detector for high-order wavefront sensing in solar adaptive optics

机译:太阳自适应光学中用于高阶波前传感的现成检测器的特性

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When completed, the Advanced Technology Solar Telescope (ATST) will be the largest and most technologically advanced solar telescope in the world. As such, it faces many challenges that have not previously been solved. One of these challenges is the high-order wavefront sensor (HOWFS) for the ATST adaptive optics system. The HOWFS requires a 960 x 960 detector array that must run at a 2 kHz frame rate in order for the adaptive optics to achieve its required bandwidth. This detector must be able to accurately image low-contrast solar granulation in order to provide usable wavefront information. We have identified the Vision Research DS-440 as an off-the-shelf solution for the HOWFS detector and demonstrate tests proving that the camera will be able to lock the adaptive optics loop on solar granulation in commonly-experienced daytime seeing conditions. Tests presented quantify the noise, linearity, gain, stability, and well depth of the camera. Laboratory tests with artificial targets demonstrate its ability to accurately track low-contrast objects and on-sky demonstrations showcase the camera's performance in realistic observing conditions.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:建成后,先进技术太阳望远镜(ATST)将成为世界上最大,技术最先进的太阳望远镜。因此,它面临许多以前尚未解决的挑战。这些挑战之一是用于ATST自适应光学系统的高阶波前传感器(HOWFS)。 HOWFS需要一个960 x 960的探测器阵列,该阵列必须以2 kHz的帧速率运行,以使自适应光学器件达到其所需的带宽。该探测器必须能够准确成像低对比度的太阳颗粒,以提供可用的波前信息。我们已经将Vision Research DS-440识别为HOWFS检测器的现成解决方案,并演示了测试,证明该摄像机能够在常见的白天观看条件下,将自适应光学环路锁定在太阳造粒上。进行的测试量化了相机的噪声,线性度,增益,稳定性和井深。使用人造目标进行的实验室测试证明了其能够准确跟踪低对比度的物体的能力,并且在天空中进行的演示展示了摄像机在现实观察条件下的性能。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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