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Cross section and neutron angular distribution measurements of neutron scattering on natural iron

机译:天然铁上子散射的横截面和中子角分布测量

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New measurements of the neutron scattering double differential cross section of iron were carried out at the neutron time-of-flight facilities GELINA and nELBE. A neutron spectrometer consisting of an array of up to 32 liquid organic scintillators was employed, which was designed to measure the scattering differential cross section at eight scattering angles and to simultaneously determine the integral cross section via numerical quadrature. The separation of elastic from inelastic scattering was achieved by analyzing the time-of-flight-dependent light-output distributions to determine the scattered neutron energy. The method was validated by studying elastic scattering on carbon and it was proved to work well for the determination of the elastic cross section. Here, the possibility to extend it to inelastic scattering was investigated too. For these experiments a sample of natural iron was used and the results cover the incident neutron energy range from 2 to 6 MeV. Both the differential and the integral elastic cross sections were produced for Fe-nat, while for inelastic scattering, partial angular distributions for scattering from the first excited level of Fe-56 could be determined.
机译:铁的中子散射双差分横截面的新测量在中子飞行时间Gelina和Nelbe中进行。采用由多达32个液体有机闪烁体的阵列组成的中子光谱仪,其被设计为以八个散射角度测量散射差分横截面,并通过数正交来同时确定积分横截面。通过分析飞行时间依赖性的光输出分布来实现弹性散射的弹性分离,以确定散射中子能量。通过研究碳的弹性散射验证该方法,证明了用于测定弹性横截面。这里,研究了将其延伸到无弹性散射的可能性。对于这些实验,使用天然铁样品,结果覆盖入射中子能量范围为2至6meV。对于Fe-NAT制造差速和整体弹性横截面,而对于无弹性散射,可以确定用于从FE-56的第一激发水平散射的部分角度分布。

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