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Cu is a very important structure material in nuclear fusion engineering. The evaluated neutron nuclear data include total, elastic, non-elastic, total inelastic, inelastic cross sections to 17 discrete levels, inelastic continuum, (n,2n), (n,n’α)+(n.αn’), (n,n’p)+(n,pn’), (n,p), (n,d), (n,t), (n,~3He), (n,α),(n,2p) and capture cross sections. The angular distributions of secondary neutron, the double differential cross sections (DDCS), the gamma-ray production data and the resonance parameters are also included. The data are given in the energy range 10~(-5) eV to 20 MeV. The evaluation is based on both experimental data measured up to 1998 and calculated data with program UNF. The evaluated data have been adopted into CENDL-3 in ENDF/B-6 format.
Cu is a very important structure material in nuclear fusion engineering. The proposed neutron nuclear data includes total, elastic, non-elastic, total inelastic, inelastic cross sections to 17 discrete levels, inelastic continuum, (n, 2n), (n, n (n, pn ’), (n, p), (n, d), (n, t), (n, ~ 3He) The angular distributions of secondary neutron, the double differential cross sections (DDCS), the gamma-ray production data and the resonance parameters are also included. The data are (n, 2p) and capture cross sections given in the energy range 10-5 eV to 20 MeV. The evaluation is based on both experimental data measured up to 1998 and calculated data with program UNF. The evaluated data have been adopted into CENDL-3 in ENDF / B- 6 format.