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Photon-counting intensified random-access charge injection device

机译:光子计数增强随机存取电荷注入装置

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Abstract: At NASA GSFC we are developing a high resolution solar-blind photon counting detector system for UV space based astronomy. The detector comprises a high gain MCP intensifier fiber- optically coupled to a charge injection device (CID). The detector system utilizes an FPGA based centroiding system to locate the center of photon events from the intensifier to high accuracy. The photon event addresses are passed via a PCI interface with a GPS derived time stamp inserted per frame to an integrating memory. Here we present imaging performance data which show resolution of MCP tube pore structure at an MCP pore diameter of 8 micrometer. This data validates the ICID concept for intensified photon counting readout. We also discuss correction techniques used in the removal of fixed pattern noise effects inherent in the centroiding algorithms used and present data which shows the local dynamic range of the device. Progress towards development of a true random access CID (RACID 810) is also discussed and astronomical data taken with the ICID detector system demonstrating the photon event time-tagging mode of the system is also presented. !7
机译:摘要:在NASA GSFC上,我们正在开发用于基于UV空间的天文学的高分辨率太阳盲光子计数探测器系统。该检测器包括光纤耦合到电荷注入设备(CID)的高增益MCP增强器。探测器系统利用基于FPGA的质心系统来定位从增强器到高精度的光子事件的中心。光子事件地址通过PCI接口传递,每帧将GPS导出的时间戳插入到集成存储器中。在这里,我们提供的成像性能数据显示了在8微米的MCP孔径下MCP管孔结构的分辨率。此数据验证了用于增强光子计数读数的ICID概念。我们还将讨论用于消除所使用的质心算法固有的固定模式噪声效应的校正技术,并提供显示设备局部动态范围的数据。还讨论了开发真正的随机访问CID(RACID 810)的进展,还介绍了用ICID检测器系统获取的天文数据,该数据证明了该系统的光子事件时间标记模式。 !7

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