首页> 外文期刊>Nuclear Science, IEEE Transactions on >Time-of-Flight Measurements for Low-Energy Components of 45-MeV Quasi-Monoenergetic High-Energy Neutron Field from src='/images/tex/28212.gif' alt='{^7{rm Li}({rm p}, {rm n})}'> Reaction
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Time-of-Flight Measurements for Low-Energy Components of 45-MeV Quasi-Monoenergetic High-Energy Neutron Field from src='/images/tex/28212.gif' alt='{^7{rm Li}({rm p}, {rm n})}'> Reaction

机译:来自 src =“ / images / tex / 28212.gif” alt =“ {的45MeV准单能高能中子场的低能成分的飞行时间测量^ 7 {rm Li}({rm p},{rm n})}“> 反应

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摘要

A quasi-monoenergetic neutron field generated in the reaction consists of a high-energy monoenergetic peak and a continuum to the low-energy region. In this study, the spectral fluence of the continuum was measured with the time-of-flight (TOF) method using a -glass scintillation detector and an organic liquid scintillation detector for the keV and MeV region, respectively. The neutron spectral fluence was determined down to the keV region by implementing a new beam chopping system and the results showed that the neutrons that came directly from the target had a lower energy limit about 100 keV. Discussions were made also on the effect of the time-independent neutrons which are assumed to be room-scattered neutrons. The obtained information is expected to contribute to understanding the quasi-monoenergetic high-energy neutron field and improvements of calibrating neutron detectors in the field.
机译:反应中产生的准单能中子场由高能单能峰和低能区的连续体组成。在这项研究中,使用飞行时间(TOF)方法分别使用keV和MeV区域的玻璃闪烁探测器和有机液体闪烁探测器测量连续谱的光谱通量。通过实施新的光束斩波系统,确定了中子谱通量到keV区域,结果表明,直接来自目标的中子的能量极限较低,约为100keV。还讨论了与时间无关的中子的影响,这些时间中子被认为是房间散射中子。预期获得的信息将有助于理解准单能高能中子场,并有助于该场中子探测器的校准。

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