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首页> 外文期刊>Publications of the Astronomical Society of the Pacific >Flyeyes: A CCD-based wavefront sensor for PUEO, the CFHT curvature AO system
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Flyeyes: A CCD-based wavefront sensor for PUEO, the CFHT curvature AO system

机译:Flyeyes:用于PUEO,CFHT曲率AO系统的基于CCD的波前传感器

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Adaptive optics wavefront sensing imposes stringent requirements on detectors, due to the simultaneous need for extremely low read noise and high frame rates. Curvature wavefront sensing measurements are based on the normalized intensity of the signal in a given subaperture, and avalance photodiodes (APDs) have traditionally been used as detectors in curvature systems such as the Canada-France-Hawaii Telescope (CFHT) adaptive optics (AO) bonnette, called PUEO after the endemic Hawaiian owl. Passively quenched APDs are robust but have low QE (~40%), while actively quenched APDs can have much higher QE, but have been known to fail. Furthermore, curvature systems with large numbers of subapertures are now in operation, and the cost of individual APDs may become prohibitive for such systems. Thus, a CCD-based alternative appears very attractive, and development of a specific chip was initiated at ESO 10 years ago. In this article, we report on the performance of the FlyEyes camera, a project that was conceived to compare the performance of the backside-illuminated customdesigned CCD detector with an array of APDs, used in an operational and well-characterized curvature wavefront AO system. The on-sky performance is demonstrated to be unaffected on bright guide stars (i.e., negligible latency), and although the faint end suffers from the 2:5 e- read noise, the performance can be regained by lowering the frame rate on the wavefront sensor. In this article, we report on results that show that the CCD can be used to replace an array of expensive APDs. This would enable a cost-effective upgrade of PUEO to a higher-order system, as has been proposed at various occasions.
机译:由于同时需要极低的读取噪声和高帧频,因此自适应光学波前感测对检测器提出了严格的要求。曲率波前传感测量基于给定子孔径中信号的归一化强度,并且传统上将像化光电二极管(APD)用作曲率系统中的检测器,例如加拿大-法国-夏威夷望远镜(CFHT)自适应光学器件(AO) bonnette,在夏威夷特有的猫头鹰之后被称为PUEO。被动淬火的APD坚固耐用,但QE较低(〜40%),而主动淬火的APD可以具有更高的QE,但已知会失败。此外,具有大量子孔径的曲率系统现在正在运行,并且单个APD的成本可能对此类系统变得昂贵。因此,基于CCD的替代方案似乎非常有吸引力,并且10年前在ESO上就开始开发特定芯片。在本文中,我们报告了FlyEyes相机的性能,该项目旨在比较背面照明的定制设计CCD检测器和一系列APD的性能,这些检测器用于可操作且特性良好的曲率波前AO系统。事实证明,天空性能不会受到明亮的引导星的影响(即潜伏时间可忽略不计),尽管微弱的一端会受到2:5电子读取噪声的影响,但可以通过降低波前的帧频来恢复性能传感器。在本文中,我们报告了一些结果,这些结果表明CCD可以用来代替一系列昂贵的APD。如各种场合所建议的那样,这将使PUEO升级到高阶系统具有成本效益。

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