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Investigation of Active Background From Photofission in Depleted Uranium Using Cherenkov Detectors and Gamma Ray Time-of-Flight Analysis

机译:利用Cherenkov探测器和伽马射线飞行时间分析研究贫铀中光裂变的活动背景

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Prompt gammas from induced fission could potentially be a valuable fission signature to use for detection of special nuclear materials like highly enriched uranium. Detectability requires an understanding of both signal and background, and the background from highly enriched uranium can be understood using depleted uranium as a surrogate. In order to study the prompt gamma active backgrounds from special nuclear materials induced through photofission, a combination of measurements using the Idaho Accelerator Center 44 MeV Electron Linear Accelerator and Monte Carlo N-Particle simulations were used. In this paper, we discuss the prompt, time-gated glass Cherenkov detector response to gamma emissions resulting from short pulse 6, 10, and 25 MeV bremsstrahlung beams incident on a depleted uranium target. Considering any threshold used with the Cherenkov detectors, the prompt gamma signal from depleted uranium is buried in the active background from the interrogating photon source. This paper describes the contributions to this prominent prompt active background observed in our measurements.
机译:诱发裂变引起的迅速伽马可能是有价值的裂变特征,可用于检测特殊核材料,例如高浓缩铀。可检测性需要同时了解信号和背景,使用贫铀作为替代品可以理解高浓缩铀的背景。为了研究通过光裂变引起的特殊核材料的迅速伽玛活动背景,使用了爱达荷州加速器中心44 MeV电子线性加速器和蒙特卡洛N粒子模拟的测量组合。在本文中,我们讨论了快速,定时门控玻璃Cherenkov检测器对入射到贫铀靶上的短脉冲6、10和25 MeV致辐射束产生的伽马发射的响应。考虑到契伦科夫探测器使用的任何阈值,贫铀的即时伽马信号被询问光子源掩埋在活动背景中。本文介绍了在我们的测量中观察到的对这种突出的,迅速的活跃背景的贡献。

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