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Development of Data Acquisition Methods for an FPGA-Based Photon Counting Detector

机译:基于FPGA的光子计数检测器数据采集方法的开发

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MCP-based detectors are widely used in the ultraviolet (UV) region due to their low noise levels, high sensitivity and good spatial and temporal resolution. We have developed a compact near-UV (NUV) detector for high-altitude balloon and space flights, using off-the-shelf MCP, CMOS sensor, and optics. The detector is designed to be capable of working in the direct frame transfer mode as well in the photon counting mode for single photon event detection. The identification and centroiding of each photon event are done using an FPGA-based data acquisition and real-time processing system. In this paper, we discuss various algorithms and methods used in both operating modes, as well as their implementation on the hardware.
机译:基于MCP的检测器由于其低噪声水平,高灵敏度以及良好的时空分辨率而被广泛用于紫外线(UV)区域。我们使用现成的MCP,CMOS传感器和光学器件,开发了一种用于高空气球和太空飞行的紧凑型近紫外线(NUV)检测器。检测器被设计为能够在直接帧传输模式下以及在光子计数模式下工作,以进行单光子事件检测。使用基于FPGA的数据采集和实时处理系统完成每个光子事件的识别和质心确定。在本文中,我们讨论了在两种操作模式下使用的各种算法和方法,以及它们在硬件上的实现。

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