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Correlated Production and Analog Transport of Fission Neutrons and Photons using Fission Models FREYA, FIFRELIN and the Monte Carlo Code TRIPOLI-4

机译:使用裂变模型Freya,Fifrelin和Monte Carlo Code Tripoli-4的裂变中子和光子的相关生产和模拟运输

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Fission modeling in general-purpose Monte Carlo transport codes often relies on average nuclear data provided by international evaluation libraries. As such, only average fission multiplicities are available and correlations between fission neutrons and photons are missing. Whereas uncorrelated fission physics is usually sufficient for standard reactor core and radiation shielding calculations, correlated fission secondaries are required for specialized nuclear instrumentation and detector modeling. For coincidence counting detector optimization for instance, precise simulation of fission neutrons and photons that remain correlated in time from birth to detection is essential. New developments were recently integrated into the Monte Carlo transport code TRIPOLI-4 to model fission physics more precisely, the purpose being to access event-by-event fission events from two different fission models: FREYA and FIFRELIN. TRIPOLI-4 simulations can now be performed, either by connecting via an API to the LLNL fission library including FREYA, or by reading external fission event data files produced by FIFRELIN beforehand. These new capabilities enable us to easily compare results from Monte Carlo transport calculations using the two fission models in a nuclear instrumentation application. In the first part of this paper, broad underlying principles of the two fission models are recalled. We then present experimental measurements of neutron angular correlations for ~(252)Cf(sf) and ~(240)Pu(sf). The correlations were measured for several neutron kinetic energy thresholds. In the latter part of the paper, simulation results are compared to experimental data. Spontaneous fissions in ~(252)Cf and ~(240)Pu are modeled by FREYA or FIFRELIN. Emitted neutrons and photons are subsequently transported to an array of scintillators by TRIPOLI-4 in analog mode to preserve their correlations. Angular correlations between fission neutrons obtained independently from these TRIPOLI-4 simulations, using either FREYA or FIFRELIN, are compared to experimental results. For ~(240)Pu(sf), the measured correlations were used to tune the model parameters.
机译:通用Monte Carlo运输代码中的裂变建模通常依赖于国际评估图书馆提供的平均核数据。因此,只有平均裂变多重性可用,并且缺少裂变中子和光子之间的相关性。然而,不相关的裂变物理学通常足以进行标准反应器核心和辐射屏蔽计算,所以需要相关的裂变赋值来进行专业的核仪器和探测器造型。对于重合计数检测器优化,例如,从出生到检测的时间内保持相关的裂变中子和光子的精确模拟至关重要。最近将新的开发融入了蒙特卡罗运输代码Tripoli-4更准确地模拟裂变物理学,目的是从两种不同的裂变模型访问逐次裂变事件:Freya和Fifrelin。现在可以通过通过API连接到包括Freya的LLNL裂变库,或者预先通过读取由FIFRELIN产生的外部裂变事件数据文件进行连接来执行TIPOLI-4模拟。这些新功能使我们能够使用核仪表应用中的两个裂变模型轻松比较蒙特卡罗运输计算的结果。在本文的第一部分中,召回了两种裂变模型的广泛潜在原则。然后,我们存在对〜(252)CF(SF)和〜(240)PU(SF)的中子角相关性的实验测量。测量多个中子动能阈值的相关性。在本文的后半部分中,将仿真结果与实验数据进行比较。 〜(252)CF和〜(240)PU的自发裂口由Freya或Fifrelin建模。随后通过三角形-4以模拟模式运输到闪烁器阵列的中子和光子以保持其相关性。与实验结果相比,使用Freya或Fifrelin独立于这些Tripoli-4模拟获得的裂变中子之间的角度相关性。对于〜(240)PU(SF),使用测量的相关性来调整模型参数。

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