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Fissile mass estimation by pulsed neutron source interrogation

机译:脉冲中子源询问的易裂变质量估计

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Passive methods for detecting correlated neutrons from spontaneous fissions (e.g. multiplicity and SVM) are widely used for fissile mass estimations. These methods can be used for fissile materials that emit a significant amount of fission neutrons (like plutonium). Active interrogation, in which fissions are induced in the tested material by an external continuous source or by a pulsed neutron source, has the potential advantages of fast measurement, alongside independence of the spontaneous fissions of the tested fissile material, thus enabling uranium measurement. Until recently, using the multiplicity method, for uranium mass estimation, was possible only for active interrogation made with continues neutron source. Pulsed active neutron interrogation measurements were analyzed with techniques, e.g. differential die away analysis (DDA), which ignore or implicitly include the multiplicity effect (self-induced fission chains). Recently, both, the multiplicity and the SVM techniques, were theoretically extended for analyzing active fissile mass measurements, made by a pulsed neutron source. In this study the SVM technique for pulsed neutron source is experimentally examined, for the first time. The measurements were conducted at the PUNITA facility of the Joint Research Centre in Ispra, Italy. First promising results, of mass estimation by the SVM technique using a pulsed neutron source, are presented.
机译:用于自发裂变检测相关中子的无源方法(例如多重性和SVM)被广泛用于裂变质量估计。这些方法可用于发射大量裂变中子(如p)的裂变材料。主动询问(通过外部连续源或脉冲中子源在被测材料中诱发裂变)具有潜在的优势,即测量速度快,而且不受被测易裂变材料自发裂变的影响,因此可以进行铀测量。直到最近,使用多重性方法进行铀质量的估算,仅对于使用连续中子源进行的主动询问是可行的。脉冲主动中子探询测量通过诸如差异消失分析(DDA),它忽略或隐含了多重效应(自生裂变链)。最近,在理论上扩展了多重性和SVM技术,以分析由脉冲中子源进行的主动裂变质量测量。在这项研究中,首次对脉冲中子源的SVM技术进行了实验检验。测量是在意大利伊斯普拉联合研究中心的PUNITA设施中进行的。提出了使用脉冲中子源通过SVM技术进行质量估计的第一个有希望的结果。

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