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Neutron-induced fission cross-section measurement of 234U with quasi-monoenergetic beams in the keV and MeV range using micromegas detectors

机译:使用微米检测器在keV和MeV范围内用准单能束测量234U的中子诱发裂变截面

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Accurate data on neutron-induced fission cross-sections of actinides are essential for the design of advanced nuclear reactors based either on fast neutron spectra or alternative fuel cycles, as well as for the reduction of safety margins of existing and future conventional facilities. The fission cross-section of 234U was measured at incident neutron energies of 560 and 660 keV and 7.5?MeV with a setup based on ‘microbulk’ Micromegas detectors and the same samples previously used for the measurement performed at the CERN n_TOF facility (Karadimos et al., 2014). The 235U fission cross-section was used as reference. The (quasi-)monoenergetic neutron beams were produced via the 7Li(p,n) and the 2H(d,n) reactions at the neutron beam facility of the Institute of Nuclear and Particle Physics at the ‘Demokritos’ National Centre for Scientific Research. A detailed study of the neutron spectra produced in the targets and intercepted by the samples was performed coupling the NeuSDesc and MCNPX codes, taking into account the energy spread, energy loss and angular straggling of the beam ions in the target assemblies, as well as contributions from competing reactions and neutron scattering in the experimental setup. Auxiliary Monte-Carlo simulations were performed with the FLUKA code to study the behaviour of the detectors, focusing particularly on the reproduction of the pulse height spectra of α-particles and fission fragments (using distributions produced with the GEF code) for the evaluation of the detector efficiency. An overview of the developed methodology and preliminary results are presented.
机译:act系元素的中子诱发裂变截面的准确数据对于基于快速中子谱或替代燃料循环的先进核反应堆设计以及降低现有和未来常规设施的安全裕度至关重要。 234U的裂变截面是在560keV和660keV入射中子能量以及7.5?MeV的入射中子能量下进行测量的,其设置基于'microbulk'Micromegas探测器,并且之前使用了在CERN n_TOF设施中进行测量的相同样品(Karadimos等等人,2014年)。 235U裂变截面用作参考。 (准)单能中子束是通过'Demokritos'国家科学研究中心的核与粒子物理研究所的中子束设施通过7Li(p,n)和2H(d,n)反应产生的。结合NeuSDesc和MCNPX代码对靶中产生的并被样品拦截的中子光谱进行了详细研究,同时考虑了靶组件中电子束的能量散布,能量损失和角度散乱以及贡献在实验装置中来自竞争反应和中子散射。使用FLUKA代码进行了辅助蒙特卡洛模拟,以研究探测器的行为,尤其着重于α粒子和裂变碎片的脉冲高度谱的再现(使用GEF代码产生的分布),以评估探测器的行为。探测器效率。概述了已开发的方法和初步结果。

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