par Leray, Sylvie;Boudard, Alain;Legrain, Robert;Terrien, Y.;Brochard, Frédéric;Drake, Darrell;Duchazeaubeneix, J.C.;Durand, J.M.;Meigo, Shin Ichiro;Milleret, G.;Whittal, D.M.;Borne, Frédéric;Wlazło, W.;Durand, Dominique ;Le Brun, Christian;Lecolley, François René;Lecolley, Jean François;Lefebvres, F.;Louvel, Michel;Varignon, Cyril;Hanappe, Francis ;Ménard, Stéphanie;Crespin, Sylvain;Stuttge, Louise;Thun, John Erik;Fréhaut, J.;Ledoux, Xavier;Martinez Miranda, Juan Emilio ;Patin, Y.;Petibon, E.;Pras, Philippe
Référence Physical review. C. Nuclear physics, 65, 4, page (446211-4462117), 044621
Publication Publié, 2002
Référence Physical review. C. Nuclear physics, 65, 4, page (446211-4462117), 044621
Publication Publié, 2002
Article révisé par les pairs
Résumé : | Spallation neutron production in proton induced reactions on Al, Fe, Zr, W, Pb, and Th targets at 1.2 GeV and on Fe and Pb at 0.8 and 1.6 GeV measured at the SATURNE accelerator in Saclay is reported. The experimental double differential cross sections are compared with calculations performed with different intra-nuclear cascade models implemented in high energy transport codes. The broad angular coverage also allowed the determination of average neutron multiplicities above 2 MeV. Deficiencies in some of the models commonly used for applications are pointed out. |