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3He Neutron Spectrometer Using Pulse Risetime Discrimination

机译:脉冲上升时间鉴别的3He中子谱仪

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A 3He filled proportional counter can be used for neutron detection in the range 100 keV to 8 MeV by using the 3He(n,p)T reaction. The major limitation as a neutron spectrometer is that the 3He recoil distribution, arising from the elastic scattering of the higher energy neutrons present, masks the 3He(n,p)T peaks due to lower energy neutron groups. Since a 3He recoil and a proton of equal energies have difference specific ionizations and, therefore, different ranges in the counter filling, one thus has a means to distinguish between pulses from the 3He(n,p)T and 3He(n,n)3He reactions. For appropriate operating conditions the risetime of the pulses for these two events will be different. By converting this risetime to a pulse height and only accepting pulses with long risetimes [which correspond to protons from the 3He(n,p)T reaction], one has a neutron spectrometer useful in an energy interval between the maximum neutron energy present and that energy for which the proton range equals the range of the maximum energy 3He recoil. Spectra of monoenergetic neutrons obtained with a 3He filled proportional counter and the pulse risetime discrimination are presented to illustrate the energy range over which this detector may be used as a neutron spectrometer. Under typical operating conditions, spectra of the 24Mg(d,n)25Al, 28Si(d,n)29P, 32S(d,n)33Cl reactions were obtained to illustrate the performance of the spectrometer.
机译:通过使用3He(n,p)T反应,可将填充3He的比例计数器用于100 keV至8 MeV的中子检测。作为中子能谱仪的主要局限性在于,由于存在的高能中子的弹性散射而产生的3He反冲分布会由于较低能的中子基团而掩盖3He(n,p)T峰。由于3He反冲力和相等能量的质子具有不同的比电离,因此反填充的范围不同,因此可以区分3He(n,p)T和3He(n,n)的脉冲3他的反应。对于适当的工作条件,这两个事件的脉冲上升时间将不同。通过将此上升时间转换为脉冲高度,并仅接受具有较长上升时间的脉冲(对应于3He(n,p)T反应的质子),就有一个中子能谱仪可用于存在的最大中子能量与最大中子能量之间的能量间隔。质子范围等于最大能量3He反冲范围的能量。给出了使用3He填充比例计数器获得的单能中子的光谱和脉冲上升时间判别,以说明该探测器可用作中子能谱仪的能量范围。在典型的操作条件下,获得了24Mg(d,n)25Al,28Si(d,n)29P,32S(d,n)33Cl反应的光谱,以说明光谱仪的性能。

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