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Processing pulses from TES microcalorimeter X-ray detectors

机译:从TES微量高管X射线探测器的处理脉冲

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Microcalorimeter X-ray detectors employing a transition-edge sensor are capable of very high energy resolution, but achieving this in practice depends on an understanding of the readout process. The combination of thermal cooling and thermoelectric feedback present in most circumstances produces a pulse whose area and amplitude both vary nonlinearly with photon energy. The resolution is further affected by the presence of pileup pulses in the pulse or baseline that need to be detected and rejected down to an arbitrarily small level. We describe here a method that includes both the rejection of pileup pulses and the correction of the nonlinearities. We have implemented the process in a system that accepts pulses from multiple detectors and analyzes them in real time. An initial brief X-ray spectrum from a standard sample supplies sufficient data for pulse characterization and energy calibration. The system is then also enabled to combine pulses from multiple detectors into an energy-calibrated histogram in real time.
机译:采用过渡边缘传感器的微量电流表X射线检测器能够非常高的能量分辨率,但实际上实现这一实践取决于对读出过程的理解。在大多数情况下,存在的热冷却和热电反馈的组合产生脉冲,该脉冲具有与光子能量的非线性变化的区域和幅度。该分辨率进一步受到需要检测的脉冲或基线中的堆积脉冲的存在,并且拒绝到任意较小的水平。我们在此描述一种方法,包括堆积脉冲的抑制和非线性的校正。我们已经在系统中实现了接受来自多个探测器的脉冲的系统并实时分析它们。来自标准样本的初始简短X射线光谱为脉冲表征和能量校准提供了足够的数据。然后,该系统还能够将来自多个检测器的脉冲与实时将脉冲组合成能量校准的直方图。

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