高能液体有机闪烁体脉冲形状识别的恶化

I. Yousuke, S. Daiki, K. Hirohiko, S. Nobuhiro, I. Kenji
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引用次数: 3

摘要

脉冲形状鉴别(PSD)通常用于液体有机闪烁体,用于从伽马射线中分离中子。用直径12.7 cm,厚度12.7 cm的NE213液体闪烁体测量了GeV范围内质子诱导散裂反应发射的粒子。利用入射到探测器上的带电粒子,研究了脉冲的形状特征。一种双栅积分法。速度低于/spl β /=0.133的带电粒子(质子和介子)被确定为常规的反冲质子事件。相反,在/spl β /=0.133以上的带电粒子被归类为PSD中的类电子事件。PSD只对产生反冲质子的中子有用,这些中子会停止在闪烁体内。实验结果表明,在PSD中,中能量中子与伽马射线的分离应该非常小心。
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Deterioration of pulse-shape discrimination in liquid organic scintillator at high energies
The pulse shape discrimination (PSD) is often made for liquid organic scintillators for the purpose of separating neutrons from gamma-rays. Particles emitted from spallation reactions induced by protons of GeV range were measured with an NE213 liquid scintillator, 12.7 cm in diameter and 12.7 cm thick. The pulse shape characteristics were studied by the use of charged-particles incident on the detector. A two-gate integration method. The charged particles (protons and pions) having velocities below /spl beta/=0.133 were identified into the conventional recoil-proton like events. On the contrary, the charged particles above /spl beta/=0.133 were classified as the electron-like events in the PSD. The PSD was useful only for neutrons which produce recoil protons stopping within the scintillator. The experimental results suggest that a great care should be taken in the PSD for separation of intermediate-energy neutrons from gamma-rays.
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