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High-energy in-beam neutron measurements of metal-based shielding for accelerator-driven spallation neutron sources

机译:金属基屏蔽层的高能束中子测量,用于加速器驱动的散裂中子源

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Metal-based shielding plays an important role in the attenuation of harmful and unwanted radiation at an accelerator-driven spallation neutron source. At the European Spallation Source, currently under construction in Lund, Sweden, metal-based materials are planned to be used extensively as neutron guide substrates in addition to other shielding structures around neutron guides. The usage of metal-based materials in the vicinity of neutron guides however requires careful consideration in order to minimize potential background effects in a neutron instrument at the facility. Therefore, we have carried out a combined study involving high-energy neutron measurements and Monte Carlo simulations of metal-based shielding, both to validate the simulation methodology and also to investigate the benefits and drawbacks of different metal-based solutions. The measurements were carried out at The Svedberg Laboratory in Uppsala, Sweden, using a 174.1 MeV neutron beam and various thicknesses of aluminum-, iron-, and copper-based shielding blocks. The results were compared to geant4 simulations and revealed excellent agreement. Our combined study highlights the particular situations where one type of metal-based solution may be preferred over another.
机译:基于金属的屏蔽层在加速器驱动的散裂中子源的有害辐射和有害辐射的衰减中起着重要作用。在目前正在瑞典隆德建造的欧洲散裂源中,计划将金属基材料以及中子导管周围的其他屏蔽结构广泛用作中子导管基板。但是,在中子导管附近使用金属基材料需要仔细考虑,以最大程度地减少设施中的中子仪器的潜在背景影响。因此,我们进行了一项结合研究,包括高能中子测量和基于金属的屏蔽层的蒙特卡洛模拟,既可以验证模拟方法,也可以研究不同的基于金属的解决方案的优缺点。测量是在瑞典乌普萨拉的Svedberg实验室中进行的,使用的是174.1 MeV中子束和各种厚度的铝,铁和铜基屏蔽块。将结果与geant4模拟进行比较,并显示出极好的一致性。我们的综合研究重点介绍了一种特殊情况,其中一种金属基解决方案可能比另一种更受欢迎。

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