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首页> 外文期刊>EPJ Web of Conferences >Pulse Shape Analysis and Discrimination for Silicon-Photomultipliers in Helium-4 Gas Scintillation Neutron Detector
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Pulse Shape Analysis and Discrimination for Silicon-Photomultipliers in Helium-4 Gas Scintillation Neutron Detector

机译:氦4气体闪烁中子探测器中硅光电倍增管的脉冲形状分析和判别

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摘要

Using natural helium (helium-4), the Arktis 180-bar pressurized gas scintillator is capable of detecting and distinguishing fast neutrons and gammas. The detector has a unique design of three optically separated segments in which 12 silicon-photomultiplier (SiPM) pairs are positioned equilaterally across the detector to allow for them to be fully immersed in the helium-4 gas volume; consequently, no additional optical interfaces are necessary. The SiPM signals were amplified, shaped, and readout by an analog board; a 250 MHz, 14-bit digitizer was used to examine the output pulses from each SiPMpair channel. The SiPM over-voltage had to be adjusted in order to reduce pulse clipping and negative overshoot, which was observed for events with high scintillation production. Pulse shaped discrimination (PSD) was conducted by evaluating three different parameters: time over threshold (TOT), pulse amplitude, and pulse integral. In order to differentiate high and low energy events, a 30ns gate window was implemented to group pulses from two SiPM channels or more for the calculation of TOT. It was demonstrated that pulses from a single SiPM channel within the 30ns window corresponded to low-energy gamma events while groups of pulses from two-channels or more were most likely neutron events. Due to gamma pulses having lower pulse amplitude, the percentage of measured gamma also depends on the threshold value in TOT calculations. Similarly, the threshold values were varied for the optimal PSD methods of using pulse amplitude and pulse area parameters. Helium-4 detectors equipped with SiPMs are excellent for in-the-field radiation measurement of nuclear spent fuel casks. With optimized PSD methods, the goal of developing a fuel cask content monitoring and inspection system based on these helium-4 detectors will be achieved.
机译:使用天然氦气(氦4),Arktis 180 bar加压气体闪烁器能够检测和区分快中子和伽马。该探测器具有独特的设计,该探测器具有三个光学分隔的段,其中12对硅光电倍增管(SiPM)对等角地横贯整个探测器放置,以使其完全浸入4氦气中;因此,不需要额外的光学接口。 SiPM信号由模拟板放大,整形和读出; 250 MHz,14位数字转换器用于检查每个SiPMpair通道的输出脉冲。为了减少脉冲削波和负过冲,必须调整SiPM过电压,这在产生高闪烁的事件中观察到。通过评估三个不同的参数来进行脉冲形识别(PSD):超限时间(TOT),脉冲幅度和脉冲积分。为了区分高能量和低能量事件,实施了30ns的门窗以将来自两个或更多SiPM通道的脉冲分组以计算TOT。结果表明,在30ns窗口内来自单个SiPM通道的脉冲对应于低能伽马事件,而来自两个通道或更多通道的脉冲组最有可能是中子事件。由于伽马脉冲具有较低的脉冲幅度,因此测得的伽马百分比还取决于TOT计算中的阈值。同样,对于使用脉冲幅度和脉冲面积参数的最佳PSD方法,阈值也有所不同。配备SiPM的He-4探测器非常适合于核废燃料桶的现场辐射测量。通过优化的PSD方法,将达到开发基于这些氦4探测器的燃料桶含量监测和检查系统的目标。

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