论文标题
使用双飞机技术的脉冲重叠的脉冲梁的中子光谱法
Neutron Spectroscopy for Pulsed Beams with Frame Overlap using a Double Time-of-Flight Technique
论文作者
论文摘要
已经开发了一种新的双重飞行时间(DTOF)中子光谱技术,该技术针对具有占空比的脉冲宽光谱源,导致框架重叠,其中来自给定的脉冲超过以前脉冲的较慢中子的快速中子来自以前的脉冲。在劳伦斯·伯克利国家实验室的88英寸回旋子上使用可调梁,中子是通过在回旋库中的铍靶上的16 meV deuterons的厚目标分解产生的。使用一系列EJ-309有机液体闪烁体从DTOF测量中推导了分解光谱形状。使用GEANT4和MCNP6进行闪烁阵列的中子检测效率的模拟。使用箔激活技术将效率校正的光谱形状标准化,以在零度相对于传入的杜特隆束以零度获得中子束的能量通量。将DTOF中子光谱与使用HEPROW和砾石脉冲高度光谱展开技术获得的光谱进行了比较。虽然展开和DTOF结果在形状上显示出一些差异,但综合磁通值在两个标准偏差范围内一致。这种方法避免了由脉冲光束带有框架重叠的脉冲光束带来的中子飞行时间光谱挑战,并为脉冲白色中子源设施打开了新的机会。
A new double time-of-flight (dTOF) neutron spectroscopy technique has been developed for pulsed broad spectrum sources with a duty cycle that results in frame overlap, where fast neutrons from a given pulse overtake slower neutrons from previous pulses. Using a tunable beam at the 88-Inch Cyclotron at Lawrence Berkeley National Laboratory, neutrons were produced via thick-target breakup of 16 MeV deuterons on a beryllium target in the cyclotron vault. The breakup spectral shape was deduced from a dTOF measurement using an array of EJ-309 organic liquid scintillators. Simulation of the neutron detection efficiency of the scintillator array was performed using both GEANT4 and MCNP6. The efficiency-corrected spectral shape was normalized using a foil activation technique to obtain the energy-dependent flux of the neutron beam at zero degrees with respect to the incoming deuteron beam. The dTOF neutron spectrum was compared to spectra obtained using HEPROW and GRAVEL pulse height spectrum unfolding techniques. While the unfolding and dTOF results exhibit some discrepancies in shape, the integrated flux values agree within two standard deviations. This method obviates neutron time-of-flight spectroscopy challenges posed by pulsed beams with frame overlap and opens new opportunities for pulsed white neutron source facilities.