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Methods for calibrating the gain and offset of the DSSC detector for the European XFEL using X-ray line sources

机译:使用X射线线源校准欧洲XFEL的DSSC检测器的增益和偏移的方法

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摘要

The DSSC (DEPFET Sensor with Signal Compression) will be a silicon based, 2d 1 Mpx imaging detector for the European X-ray Free Electron Laser Facility (XFEL.EU) in Hamburg, Germany. The DSSC is foreseen for soft X-radiation from 0.5 keV up to 6 keV . Driven by its scientific requirements, the design goals of the detector system are single photon detection, high dynamic range and a high frame rate of up to 4.5 MHz. Signal compression and amplification will be performed in the silicon sensor pixels yielding a low signal noise. Utilizing an in-pixel active filtering stage and an 8/9-bit ADC, the detector will provide parallel read-out of all pixels. In order to calibrate offset and gain, the procedure currently under investigation relies on determining peak positions in measurements with calibration line sources such as 55Fe. Here the status of studies of the stability and performance of a parameterized fit function designed for this task will be presented.
机译:DSSC(带信号压缩功能的DEPFET传感器)将是基于硅的2d 1 Mpx成像探测器,用于德国汉堡的欧洲X射线自由电子激光设施(XFEL.EU)。可以预见,DSSC将从0.5 keV到6 keV进行软X辐射。受其科学要求的驱使,探测器系统的设计目标是单光子探测,高动态范围和高达4.5 MHz的高帧频。信号压缩和放大将在硅传感器像素中执行,从而产生低信号噪声。利用像素内有源滤波级和8/9位ADC,该检测器将提供所有像素的并行读出。为了校准偏移和增益,当前正在研究的程序依赖于在使用校准线源(例如55Fe)的测量中确定峰值位置。这里将介绍针对该任务设计的参数化拟合函数的稳定性和性能的研究现状。

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