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Attenuation curves in concrete of neutrons from 1 GeV/u C and U ions on a Fe target for the shielding design of RIB in-flight facilities

机译:1 GeV / u C和U离子在Fe目标上的中子混凝土中的衰减曲线,用于RIB机上设施的屏蔽设计

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摘要

Experimental data on neutron emission from the interaction of heavy ion beams with matter are far less abundant than data on neutron production from protons. The aim of the present work is to extend the available computational shielding data to high-energy neutrons produced by heavy ion beams (uranium and carbon) of 1 GeV/u slowed down in a thick iron target. Source terms and attenuation lengths for neutron attenuation in a concrete shield were calculated starting from experimental neutron energy distributions measured at GSI in the angular range from 0 degree to 90 degree . A comparison is also made with previous calculations performed for different ions and energies and with earlier estimates made at GSI for neon beams with 0.8 and 2 GeV/u energy stopped in thick iron, lead and uranium targets.
机译:重质离子束与物质相互作用的中子发射实验数据远少于质子产生中子的数据。本工作的目的是将可用的计算屏蔽数据扩展到由厚铁靶中减慢的1 GeV / u的重离子束(铀和碳)产生的高能中子。从GSI在0度到90度的角度范围内测量的实验中子能量分布开始计算混凝土屏蔽中子衰减的源项和衰减长度。还与先前针对不同离子和能量进行的计算进行了比较,并与在GSI上针对0.8和2 GeV / u能量停止在厚铁,铅和铀靶中的氖束的早期估算进行了比较。

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