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Ambient neutron background in the shallow-underground laboratory Felsenkeller

机译:环境中子背景在浅地下实验室felsenkeller

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One important component of the ambient background in underground laboratories are neutrons, which cover a wide energy range from thermal up to 100 MeV. After a few meters rock overburden, cosmic-ray neutrons are a negligible contribution underground and the remaining flux is due to neutron production by cosmic-ray muons and by (α,n) reactions from natural radioactivity in the rock. There are only a few measurements of the full spectral neutron flux available in the literature, a fact which hampers comparisons between laboratories and negatively affects the planning of future experiments. In an effort to overcome this issue a setup consisting of six moderated and one unmoderated ~3He neutron counters that has been used at a depth of 850 m in the Canfranc underground laboratory, Spain [1], was utilized to study the neutron flux in the 48 m deep Dresden Felsenkeller underground laboratory, Germany. At Felsenkeller, an additional counter with a lead liner was used in order to address also the high-energy flux up to several hundreds of MeV.
机译:地下实验室中的环境背景的一个重要组成部分是中子,其覆盖从热量到100米的热量范围。经过几米的岩石覆盖层,宇宙射线中子是局部局部贡献,其余的助焊剂是由于宇宙射线μONs的中子生产,并通过岩石中的天然放射性的反应(α,n)反应。文献中只有几种测量的全光谱中子助焊剂,这是一个事实,这妨碍了实验室之间的比较并对未来实验的规划产生了负面影响。努力克服这个问题,由六个主持的和一个未经请修的〜3HE中子计数器组成的设置,该〜3HE中子计数器在Canfranc地下实验室中的850米的深度中使用,Spain [1],用于研究中子磁通量48米深德累斯顿Felsenkeller地下实验室,德国。在Felsenkeller,使用带有领导衬垫的附加计数器,以解决高达数百MEV的高能量通量。

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