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A study on the pulse height resolution of organic scintillator digitized pulses

机译:有机闪烁体数字化脉冲的脉冲高度分辨率研究

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Organic scintillator detectors are widely used for neutron spectroscopy in fusion devices due to their good energy resolution and capability of neutron/gamma discrimination. Nowadays, scintillator pulses are commonly recorded by means of digital acquisition systems. These have several advantages, and in particular the possibility of off-line data reprocessing: however, the signal digitization can be a cause of degradation of the pulse height (PH) resolution (and therefore of the energy resolution obtained after pulse height spectra unfolding). In this work, the problem of how pulse digitization may influence the pulse height resolution is investigated. First, through downsampling of digitized scintillator pulses, we determine the minimum sampling rate required to avoid any degradation of the pulse height resolution. Secondly, we find that the application of interpolation methods to the digitized pulses does not affect the pulse height resolution, whereas it increases the figure of merit for neutron/gamma discrimination. These results are relevant to define the specifications for the digital acquisition systems of neutron detectors in present and future fusion devices such as JET and ITER.
机译:有机闪烁体探测器由于其良好的能量分辨率和中子/伽玛分辨能力而被广泛用于聚变设备中的中子光谱学。如今,闪烁器脉冲通常通过数字采集系统进行记录。这些具有多个优点,尤其是离线数据重新处理的可能性:但是,信号数字化可能是导致脉冲高度(PH)分辨率(以及因此导致脉冲高度谱展开后获得的能量分辨率)下降的原因。 。在这项工作中,研究了脉冲数字化如何影响脉冲高度分辨率的问题。首先,通过数字化闪烁器脉冲的下采样,我们确定了避免脉冲高度分辨率降低的最低采样率。其次,我们发现将插值方法应用于数字化脉冲不会影响脉冲高度分辨率,而会增加中子/伽玛分辨的品质因数。这些结果与定义当前和未来的聚变设备(如JET和ITER)中的中子探测器的数字采集系统的规范有关。

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