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Can Ce:Gd3Al2Ga3O12 scintillators detect thermal neutrons?

机译:Ce:Gd 3 Al 2 Ga 3 O 12 闪烁体能否检测热中子?

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Alternative neutron detectors are actively being researched to replace 3He gas detectors for neutron scattering and homeland security. Neutron scintillators for this purpose must have high light output, short decay time, low sensitivity to gamma-rays, and possibly be non-hygroscopic. Gd-containing oxide scintillators are excellent at detecting gamma-rays, but their thermal-neutron detectability has not been proven yet, because of similar pulse-shapes and pulse-heights generated under thermal neutrons and gamma irradiation. Here we show that a non-negative matrix factorization (NMF) algorithm for digital signal processing greatly improves neutron-gamma discrimination ratio (the ratio of neutron and gamma detection efficiencies) of a Gd-containing scintillator, Ce:Gd3Al2Ga3O12 (GAGG). In the case of Ce:GAGG as a gamma detector, better discrimination against ambient background events was observed compared to results from a traditional pulse-height method. It was also found that the secondary integration area (S2) of a waveform in the time window of 0-50 ns is an energy measure of gamma-rays. Therefore, Gd-containing scintillators are potentially applicable in not only neutron detection but also in gamma detection with higher signal-to-noise ratio.
机译:正在积极研究替代中子探测器以替代 3 他的气体探测器用于中子散射和国土安全。为此目的的中子闪烁体必须具有高的光输出,短的衰减时间,对伽马射线的低敏感性,并且可能是非吸湿性的。含氧化物闪烁体在探测伽马射线方面非常出色,但是由于在热中子和伽马射线照射下产生相似的脉冲形状和脉冲高度,因此尚未证明其热中子可探测性。在这里,我们表明,用于数字信号处理的非负矩阵分解(NMF)算法极大地提高了含Gd闪烁体Ce:Gd的中子-伽马分辨比(中子与伽马探测效率之比) 3 2 3 Ø 12 (GAGG)。在Ce:GAGG作为伽马探测器的情况下,与传统脉冲高度方法的结果相比,观察到对环境背景事件的更好区分。还发现二级整合区(S 2 0-50 ns的时间窗口中的波形的)是伽马射线的能量度量。因此,含Gd的闪烁体不仅可用于中子探测,而且可用于具有较高信噪比的伽马探测。

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