Results from the IAEA benchmark of spallation models

Spallation reactions play an important role in a wide domain of applications. In the simulation codes used in this field, the nuclear interaction cross-sections and characteristics are computed by spoliation models. The International Atomic Energy Agency (IAEA) has recently organised a benchmark of...

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Main Authors: Khandaker, M.M., Michel, R., Leray, S., David, J.C., Konobeyev, A., Mank, G., Mengoni, A., Otsuka, N., Filges, D., Gallmeier, F.
Format: Article
Published: 2011
Subjects:
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author Khandaker, M.M.
Michel, R.
Leray, S.
David, J.C.
Konobeyev, A.
Mank, G.
Mengoni, A.
Otsuka, N.
Filges, D.
Gallmeier, F.
author_facet Khandaker, M.M.
Michel, R.
Leray, S.
David, J.C.
Konobeyev, A.
Mank, G.
Mengoni, A.
Otsuka, N.
Filges, D.
Gallmeier, F.
author_sort Khandaker, M.M.
collection UM
description Spallation reactions play an important role in a wide domain of applications. In the simulation codes used in this field, the nuclear interaction cross-sections and characteristics are computed by spoliation models. The International Atomic Energy Agency (IAEA) has recently organised a benchmark of the spoliation models used or that could be used in the future into high-energy transport codes. The objectives were, first, to assess the prediction capabilities of the different spoliation models for the different mass and energy regions and the different exit channels and, second, to understand the reason for the success or deficiency of the models. Results of the benchmark concerning both the analysis of the prediction capabilities of the models and the first conclusions on the physics of spoliation models are presented.
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spelling um.eprints-80082013-07-05T09:13:15Z http://eprints.um.edu.my/8008/ Results from the IAEA benchmark of spallation models Khandaker, M.M. Michel, R. Leray, S. David, J.C. Konobeyev, A. Mank, G. Mengoni, A. Otsuka, N. Filges, D. Gallmeier, F. QC Physics Spallation reactions play an important role in a wide domain of applications. In the simulation codes used in this field, the nuclear interaction cross-sections and characteristics are computed by spoliation models. The International Atomic Energy Agency (IAEA) has recently organised a benchmark of the spoliation models used or that could be used in the future into high-energy transport codes. The objectives were, first, to assess the prediction capabilities of the different spoliation models for the different mass and energy regions and the different exit channels and, second, to understand the reason for the success or deficiency of the models. Results of the benchmark concerning both the analysis of the prediction capabilities of the models and the first conclusions on the physics of spoliation models are presented. 2011 Article PeerReviewed Khandaker, M.M. and Michel, R. and Leray, S. and David, J.C. and Konobeyev, A. and Mank, G. and Mengoni, A. and Otsuka, N. and Filges, D. and Gallmeier, F. (2011) Results from the IAEA benchmark of spallation models. Journal of the Korean Physical Society, 59 (2). pp. 791-796. ISSN 0374-4884, DOI https://doi.org/10.3938/jkps.59.791 <https://doi.org/10.3938/jkps.59.791>. http://www.kps.or.kr/jkps/abstract_view.asp?articleuid=96AB861A-AE45-4722-826C-FCEDAE6B26DA 10.3938/jkps.59.791
spellingShingle QC Physics
Khandaker, M.M.
Michel, R.
Leray, S.
David, J.C.
Konobeyev, A.
Mank, G.
Mengoni, A.
Otsuka, N.
Filges, D.
Gallmeier, F.
Results from the IAEA benchmark of spallation models
title Results from the IAEA benchmark of spallation models
title_full Results from the IAEA benchmark of spallation models
title_fullStr Results from the IAEA benchmark of spallation models
title_full_unstemmed Results from the IAEA benchmark of spallation models
title_short Results from the IAEA benchmark of spallation models
title_sort results from the iaea benchmark of spallation models
topic QC Physics
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