Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model

Displacement cross-sections for an advanced assessment of radiation damage rates were obtained for a number of materials using the arc-dpa model at neutron incident energies from 10−5 eV to 10 GeV. Evaluated data files, CEM03 and ECIS codes, and an approximate approach were applied for the calculati...

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Main Authors: A. Yu. Konobeyev, U. Fischer, S.P. Simakov
Format: Article
Language:English
Published: Elsevier 2019-02-01
Series:Nuclear Engineering and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S173857331830370X
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author A. Yu. Konobeyev
U. Fischer
S.P. Simakov
author_facet A. Yu. Konobeyev
U. Fischer
S.P. Simakov
author_sort A. Yu. Konobeyev
collection DOAJ
description Displacement cross-sections for an advanced assessment of radiation damage rates were obtained for a number of materials using the arc-dpa model at neutron incident energies from 10−5 eV to 10 GeV. Evaluated data files, CEM03 and ECIS codes, and an approximate approach were applied for the calculation of recoil energy distributions in neutron induced reactions.Three sets of displacement cross-sections based on the use of low-energy data from JEFF-3.3, ENDF/B-VIII.0, and JENDL-4.0u were prepared. Files contain also cross-sections calculated using the standard NRT model.Special efforts were made to estimate the uncertainty of obtained displacement cross-sections. Keywords: Radiation damage, Displacement cross-section, Neutron irradiation
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spelling doaj.art-154313d6068c419194afc75a00b20a032022-12-22T00:53:45ZengElsevierNuclear Engineering and Technology1738-57332019-02-01511170175Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa modelA. Yu. Konobeyev0U. Fischer1S.P. Simakov2Corresponding author.; Institute for Neutron Physics and Reactor Technology, Karlsruhe Institute of Technology, 76344 Eggenstein-Leopoldshafen, GermanyInstitute for Neutron Physics and Reactor Technology, Karlsruhe Institute of Technology, 76344 Eggenstein-Leopoldshafen, GermanyInstitute for Neutron Physics and Reactor Technology, Karlsruhe Institute of Technology, 76344 Eggenstein-Leopoldshafen, GermanyDisplacement cross-sections for an advanced assessment of radiation damage rates were obtained for a number of materials using the arc-dpa model at neutron incident energies from 10−5 eV to 10 GeV. Evaluated data files, CEM03 and ECIS codes, and an approximate approach were applied for the calculation of recoil energy distributions in neutron induced reactions.Three sets of displacement cross-sections based on the use of low-energy data from JEFF-3.3, ENDF/B-VIII.0, and JENDL-4.0u were prepared. Files contain also cross-sections calculated using the standard NRT model.Special efforts were made to estimate the uncertainty of obtained displacement cross-sections. Keywords: Radiation damage, Displacement cross-section, Neutron irradiationhttp://www.sciencedirect.com/science/article/pii/S173857331830370X
spellingShingle A. Yu. Konobeyev
U. Fischer
S.P. Simakov
Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model
Nuclear Engineering and Technology
title Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model
title_full Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model
title_fullStr Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model
title_full_unstemmed Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model
title_short Atomic displacement cross-sections for neutron irradiation of materials from Be to Bi calculated using the arc-dpa model
title_sort atomic displacement cross sections for neutron irradiation of materials from be to bi calculated using the arc dpa model
url http://www.sciencedirect.com/science/article/pii/S173857331830370X
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