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Characterization of Deuterated-Xylene Scintillator as a Neutron Spectrometer

机译:氘化二甲苯闪烁体的中子谱仪表征

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We have experimentally characterized the neutron light output response functions of a deuterated-xylene scintillator for neutron energies lower than 10 MeV. We then used the response matrix to unfold the energy distribution of neutrons produced via several reactions, i.e., spontaneous fission, d(d,n)3He, 27Al(d,n)28Si, and 9Be(alpha,n)12C. Organic scintillators based on deuterated compounds show a fast response and good gamma-neutron discrimination capability, similar to or better than proton-based scintillators. Deuterated scintillators can also effectively provide neutron energy spectra by unfolding measured data with the detector response matrix, without the need of time-of-flight. Deuteron recoils, produced by elastic collisions between deuterium and impinging neutrons, are preferentially forward-scattered. This non-isotropic reaction results in distinct peaks in the response functions to monoenergetic neutrons. In this work, we evaluated a custom-fabricated 7.62 cm ×7.62 cm deuterated-xylene (EJ301D) liquid scintillator. This liquid has a low volatility and higher flash point, compared to benzene-based deuterated detectors, e.g., EJ315 and NE230. We measured the EJ301D detector neutron response matrix (up to 6 MeV neutron energy) using an intense 252Cf source and the time-of-flight technique. The number of response functions obtained using our method is only limited by counting statistics and by the experimentally achievable energy resolution. Multi-channel unfolding was then performed successfully for neutron sources with different energy spectra.
机译:我们已通过实验表征了氘化二甲苯闪烁体对中子能量低于10 MeV的中子光输出响应功能。然后,我们使用响应矩阵来展开通过几个反应产生的中子的能量分布,即自发裂变,d(d,n)3He,27Al(d,n)28Si和9Be(alpha,n)12C。基于氘代化合物的有机闪烁体显示出快速响应和良好的伽玛中子分辨能力,与基于质子的闪烁体相似或更好。氘代闪烁体还可以通过利用检测器响应矩阵展开测量数据来有效提供中子能谱,而无需飞行时间。氘和撞击中子之间的弹性碰撞产生的氘核反冲力优选向前散射。这种非各向同性反应导致对单能中子的响应函数出现明显的峰值。在这项工作中,我们评估了定制的7.62 cm×7.62 cm氘代二甲苯(EJ301D)液体闪烁器。与基于苯的氘代检测器(例如EJ315和NE230)相比,该液体具有较低的挥发性和较高的闪点。我们使用强烈的252Cf离子源和飞行时间技术测量了EJ301D检测器中子响应矩阵(最高6 MeV中子能量)。使用我们的方法获得的响应函数的数量仅受统计计数和实验上可获得的能量分辨率的限制。然后成功地对具有不同能谱的中子源进行了多通道展开。

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