Radiation Protection Dosimetry · 2005 · 12 citations · 4 references
EngineeringNuclear PhysicsPhysicsHigh-energy Nuclear ReactionNatural SciencesTungsten TargetHigh-energy NeutronsNeutron SourceCosmic RayConcrete ShieldRadioactive Spallation ProductsNeutron ScatteringNuclear EngineeringRadiation Protection
We carried out a shielding experiment of high-energy neutrons, generated from a tungsten target bombarded with primary 500-MeV protons at KENS, which penetrated through a concrete shield in the zero-degree direction. We propose a new method to evaluate the spectra of high-energy neutrons ranging from 8 to 500 MeV. Au foils were set in a concrete shield, and the reaction rates for 13 radionuclides produced by the spallation reactions on the Au targets were measured by radiochemical techniques. The experimental results were compared with those obtained by the MARS14 Monte-Carlo code. A good agreement (between them) was found for energies beyond 100 MeV. The profile of the neutron spectrum, ranging from 8 to 500 MeV, does not depend on the thickness of the concrete shield.
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R. Michel, R. Bodemann, H. Busemann et al. · Nuclear Instruments and Methods in Physics Research Section B Beam Interactions with Materials and Atoms · 1997 · 322 citations
Proton-induced spallation at 600 MeV
R. Michel, B. Dittrich, U. Herpers et al. · The Analyst · 1989 · 60 citations
Spallation Cross-sections, Electrical Engineering, Engineering +12