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GEANT4 simulation of the neutron background of the C6D6 set-up for capture studies at n_TOF

机译:用于n_TOF捕获研究的C6D6装置中子本底的GEANT4模拟

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摘要

The neutron sensitivity of the C6D6 detector setup used at n_TOF facility for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of the experimental area has been implemented in the simulations. The simulations have been analyzed in the same manner as experimental data, in particular by applying the Pulse Height Weighting Technique. The simulations have been validated against a measurement of the neutron background performed with a natC sample, showing an excellent agreement above 1 keV. At lower energies, an additional component in the measured natC yield has been discovered, which prevents the use of natC data for neutron background estimates at neutron energies below a few hundred eV. The origin and time structure of the neutron background have been derived from the simulations. Examples of the neutron background for two different samples are demonstrating the important role of accurate simulations of the neutron background in capture cross-section measurements.
机译:已通过详细的GEANT4模拟研究了n_TOF设施用于捕获测量的C6D6检测器设置的中子灵敏度。在仿真中已实现了整个n_TOF实验大厅的逼真的软件副本,包括中子束线,样品,检测器支架和实验区域的壁。已经以与实验数据相同的方式对仿真进行了分析,尤其是通过应用脉冲高度加权技术。该仿真已针对使用natC样品进行的中子本底测量进行了验证,结果表明在1 keV以上具有极好的一致性。在较低的能量下,已发现测量的natC产量中的其他成分,这阻止了在中子能量低于数百eV时将natC数据用于中子本底估计。中子本底的起源和时间结构是从模拟中得出的。两种不同样品的中子本底实例证明了准确模拟中子本底在捕获截面测量中的重要作用。

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