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A noiseless kilohertz frame rate imaging detector based on microchannel plates read out with the Medipix2 CMOS pixel chip

机译:基于用Medipix2 CMOS像素芯片读取的微通道板的无噪声千赫兹帧频成像检测器

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摘要

A new hybrid optical imaging detector is described that is being developed for the next generation adaptive optics (AO) wavefront sensors (WFS) for ground-based telescopes. The detector consists of a photocathode and proximity focused microchannel plates (MCPs) read out by the Medipix2 CMOS pixel ASIC. Each pixel of the Medipix2 device measures 55x55 um2 and comprises pre-amplifier, a window discriminator and a 14-bit counter. The 256x256 Medipix2 array can be read out noiselessly in 287 us. The readout can be electronically shuttered down to a temporal window of a few us. The Medipix2 is buttable on 3 sides to produce 512x(n*256) pixel devices. Measurements with ultraviolet light yield a spatial resolution of the detector at the Nyquist limit. Sub-pixel resolution can be achieved using centroiding algorithms. For the AO application, very high continuous frame rates of the order of 1 kHz are required for a matrix of 512x512 pixels. The design concepts of a parallel readout board are presented that will allow this fast data throughput. The development status of the optical WFS tube is also explained.
机译:描述了一种新的混合光学成像探测器,该探测器正在为基于地面的望远镜的下一代自适应光学(AO)波前传感器(WFS)开发。该检测器包括一个光阴极和由Medipix2 CMOS像素ASIC读取的聚焦微通道板(MCP)。 Medipix2设备的每个像素尺寸为55x55 um2,并包括前置放大器,窗口鉴别器和14位计数器。 256x256 Medipix2阵列可以在287 us内无噪声地读出。读数可以通过电子方式降低到我们几个人的时间窗口。 Medipix2可在3侧固定,以生产512x(n * 256)像素设备。用紫外光进行测量可得出探测器的奈奎斯特极限空间分辨率。可以使用质心算法来实现亚像素分辨率。对于AO应用,对于512x512像素的矩阵,需要非常高的1 kHz连续帧速率。提出了并行读取板的设计概念,这些设计可实现这种快速的数据吞吐量。还说明了WFS光学管的发展状况。

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