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Neutron-Photon Pile-Up and its Effects on Multiplicity Correlations of Fission

机译:中子-光子堆积及其对裂变多重相关的影响

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In nonproliferation applications, an accurate knowledge of fission signatures is of paramount importance and can lead to the refinement of current assaying techniques, as well as the development of new techniques based on yet unknown signatures. One of the distinguishing signatures of a fission reaction is the virtually simultaneous emission of neutrons and photons, with both particle types emitted in multiplicity. A correlation between the multiplicities of neutrons and photons from fission has been investigated, but values of this correlation determined from experimental data and theoretical models, respectively, differ significantly. One possible source of this disagreement is that experimental setups sensitive to this correlation are often affected by significant sources of bias. Specifically, organic scintillators are sensitive to both neutrons and photons, and thus represent an ideal detector type in assaying neutron-photon multiplicities; however, they are susceptible, among other things, to neutron-photon pile-up. We present the results of our investigation on the effects of neutron-photon pile-up on the covariance between the detected multiplicities of neutrons and photons from fission. We show that pile-up disproportionately affects events that are important in the determination of multiplicity covariance: even at a low pile-up rate, the multiplicity covariance in the observed data is significantly distorted. We develop a closed form expression which models the effects of pile-up on the detected data. The expression is validated in simulations in the Monte Carlo radiation transport code MCNPX-PoliMi, with sources drawn from several models of fission emission, with a range of positive and negative correlations. We develop an unfolding technique based on these results, with associated error and sensitivity analysis.
机译:在防扩散应用中,对裂变特征的准确了解是至关重要的,它可以导致当前测定技术的完善,以及基于未知特征的新技术的发展。裂变反应的显着特征之一是实际上同时发射中子和光子,两种粒子类型都以多重方式发射。已经研究了裂变中子和光子的多重性之间的相关性,但是分别从实验数据和理论模型确定的这种相关性值存在显着差异。造成这种分歧的一个可能原因是,对这种相关性敏感的实验装置通常会受到大量偏差的影响。具体而言,有机闪烁体对中子和光子均敏感,因此是测定中子-光子多重性时的理想检测器类型。但是,它们尤其容易受到中子-光子堆积的影响。我们提出了中子-光子堆积对裂变中子与光子的多重检测之间的协方差影响的研究结果。我们表明堆积不成比例地影响在确定多重协方差中重要的事件:即使在较低堆积率下,观察到的数据中的多重协方差也会显着失真。我们开发了一个封闭形式的表达式,该表达式对堆积对检测到的数据的影响进行建模。该表达式在蒙特卡罗辐射传输代码MCNPX-PoliMi的模拟中得到了验证,其来源来自裂变发射的多个模型,具有正相关和负相关的范围。我们根据这些结果开发一种展开技术,并进行相关的误差和灵敏度分析。

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