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首页> 外文期刊>IEEE Transactions on Nuclear Science >Imaging characteristics of the Extreme Ultraviolet Explorer microchannel plate detectors
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Imaging characteristics of the Extreme Ultraviolet Explorer microchannel plate detectors

机译:Extreme Ultraviolet Explorer微通道板检测器的成像特性

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摘要

The Extreme Ultraviolet Explorer (EUVE) satellite will conduct an all-sky survey over the wavelength range from 70 AA 760 AA using four grazing-incidence telescopes and seven microchannel-plate (MCP) detectors. The imaging photon-counting MCP detectors have active areas of 19.6 cm/sup 2/. Photon arrival position is determined using a wedge-and-strip anode and associated pulse-encoding electronics. The imaging characteristics of the EUVE flight detectors are presented including image distortion, flat-field response and spatial differential nonlinearity. Also included is a detailed discussion of image distortions due to the detector mechanical assembly, the wedge-and-strip anode, and the electronics. Model predictions of these distortions are compared to preflight calibration images which show distortions less than 1.3% RMS of the detector diameter of 50 mm before correction. The plans for correcting these residual detector image distortions to less than 0.1% RMS are also presented.
机译:极紫外探测器(EUVE)卫星将使用四个掠入射望远镜和七个微通道板(MCP)探测器在70 AA 760 AA的波长范围内进行全天候测量。成像光子计数MCP检测器的有效面积为19.6 cm / sup 2 /。光子到达位置使用楔形和带状阳极以及相关的脉冲编码电子设备确定。介绍了EUVE飞行探测器的成像特性,包括图像失真,平场响应和空间微分非线性。还包括由于检测器机械组件,楔形和带状阳极以及电子设备引起的图像失真的详细讨论。将这些失真的模型预测与飞行前校准图像进行比较,该飞行前校准图像显示的失真小于校正前50 mm探测器直径的RMS的1.3%。还提出了将这些残留检测器图像失真校正到小于0.1%RMS的计划。

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