Measurement of $γ$-rays generated by neutron interaction with ${}^{16}$O at 30 MeV and 250 MeV

T. Tano, T. Horai, Y. Ashida, Y. Hino, F. Iacob, A. Maurel, M. Mori, G. Collazuol, A. Konaka, Y. Koshio, T. Nakaya, T. Shima, R. Wendell
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Abstract

Deep understanding of $\gamma$-ray production from the fast neutron reaction in water is crucial for various physics studies at large-scale water Cherenkov detectors. We performed test experiments using quasi-mono energetic neutron beams ($E_n = 30$ and 250~MeV) at Osaka University's Research Center for Nuclear Physics to measure $\gamma$-rays originating from the neutron-oxygen reaction with a high-purity germanium detector. Multiple $\gamma$-ray peaks which are expected to be from excited nuclei after the neutron-oxygen reaction were successfully observed. We measured the neutron beam flux by using a liquid scintillator for the cross section measurement. With a spectral fitting analysis based on the tailored $\gamma$-ray signal and background templates, we measured cross sections for each observed $\gamma$-ray component. The results will be useful to validate neutron models employed in the on-going and future water Cherenkov experiments.
测量中子在 30 MeV 和 250 MeV 与 ${}^{16}$O 相互作用产生的 $γ$ 射线
深入了解水中快中子反应产生的伽马射线对于在大型水切伦科夫探测器上进行各种物理研究至关重要。我们在大阪大学核物理研究中心使用准单能中子束($E_n = 30$ 和 250~MeV)进行了测试实验,用高纯锗探测器测量了源于中子-氧反应的 $\gamma$ 射线。我们成功地观测到了多个伽马射线峰,预计它们来自中子-氧反应后的激发核。我们使用液体闪烁器测量了中子束通量的横截面。通过基于定制的伽马射线信号和背景模板的光谱拟合分析,我们测量了每个观测到的伽马射线成分的截面。这些结果将有助于验证正在进行的和未来的水切伦科夫实验中使用的中子模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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