Reaction Rate Analysis of Nuclear Spallation Reactions Generated by 150, 190, and 235MeV Protons
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概要
- 論文の詳細を見る
At the National Cancer Center, proton irradiation experiments have been conducted using the cyclotron accelerator to measure the neutron spectrum by the foil activation method. The experimental results demonstrate that high-energy neutrons are bombarded by injecting high-energy protons onto the tungsten target. The agreement between the results of the experiments and the MCNPX calculations with ENDF/B-VI is around 20% in the relative difference of the C/E (calculation/experiment) values in some of the 209Bi(n, xn)210−xBi reactions. Here, the activation foil 209Bi is useful in obtaining experimental neutron spectrum information on nuclear spallation reactions of the tungsten target by the high-energy protons ranging between 150 and 235 MeV. The current experimental data could contribute to evaluating the accuracy of the numerical simulation methodology of reaction rates and the uncertainties of cross sections of 209Bi, as experimental benchmarks.
- 社団法人 日本原子力学会の論文
- 2010-11-01
著者
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IWASAKI Tomohiko
Department of Quantum Science and Energy Engineering, Tohoku University
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PYEON Cheol
Nuclear Engineering Science Division, Research Reactor Institute, Kyoto University
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SHIGA Hiroshi
Department of Fundamental Energy Science, Graduate School of Energy Science, Kyoto University
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MISAWA Tsuyoshi
Nuclear Engineering Science Division, Research Reactor Institute, Kyoto University
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Tomohiko Iwasaki
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Iwasaki Tomohiko
Tohoku University Graduate School Of Engineering Department Of Quantum Science And Energy Engineerin
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三澤 毅
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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SHIROYA Seiji
Research Reactor Institute, Kyoto University
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Shiroya S
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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Shiroya S
Nuclear Energy Science Division Reserch Ractor Institute Kyoto University
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Shiroya S
Research Reactor Institute Kyoto University
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Shiroya S
Kyoto Univ.
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Pyeon Cheol
Nuclear Engineering Sci. Div. Res. Reactor Inst. Kyoto Univ.
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Shiroya S
Kyoto Univ. Osaka
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Shiroya Seiji
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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Shiroya Seiji
Research Reactor Institute Kyoto University
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Shiroya Seiji
Nuclear Energy Science Division Research Reactor Institute Kyoto University
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NISHIO Teiji
Particle Therapy Division, Research Center for Innovative Oncology, National Cancer Center Hospital
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Shiga Hiroshi
Department Of Fundamental Energy Science Graduate School Of Energy Science Kyoto University
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Nishio Teiji
Particle Therapy Division Research Center For Innovative Oncology National Cancer Center
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Abe Kazuaki
Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku Univers
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YASHIMA Hiroshi
Nuclear Engineering Science Division, Research Reactor Institute, Kyoto University
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Shiroya Seiji
Nuclear Energy Science Division Reserch Ractor Institute Kyoto University
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Misawa Tsuyoshi
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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Iwasaki Tomohiko
Department Of Cardiology Heart Institute Of Japan Tokyo Women's Medical College
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Abe Kazuaki
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Yashima Hiroshi
Nuclear Engineering Sci. Div. Res. Reactor Inst. Kyoto Univ.
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Yashima Hiroshi
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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