26 research outputs found

    Direct Neutron Capture for Magic-Shell Nuclei

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    In neutron capture for magic--shell nuclei the direct reaction mechanism can be important and may even dominate. As an example we investigated the reaction 48^{48}Ca(n,γ)49\gamma)^{49}Ca for projectile energies below 250\,keV in a direct capture model using the folding procedure for optical and bound state potentials. The obtained theoretical cross sections are in agreement with the experimental data showing the dominance of the direct reaction mechanism in this case. The above method was also used to calculate the cross section for 50^{50}Ca(n,γ)51\gamma)^{51}Ca.Comment: REVTeX, 7 pages plus 3 uuencoded figures, the complete uuencoded postscript file is available at ftp://is1.kph.tuwien.ac.at/pub/ohu/calcium.u

    Intranuclear cascade study of the hadron‐nucleus interactions at 1 GeV/c

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    The proton inclusive spectra measured with 800 MeV/c ..pi../sup +/ beam (BNL) on light nuclei, and the 600 MeV/c /bar p/ beam (LEAR) on /sup 6/Li and /sup 63/Cu have been successfully interpreted in terms of the Intranuclear Cascade (INC) Model. According to the INC model predictions the /bar p/ induced reaction results in high pion yield for the light /sup 6/Li target case. This is attributed to the nonavailability of nucleons to be knocked out by the pions produced following the /bar p/ annihilation. While in this case of the heavier /sup 63/Cu target some of the internally produced pions are subsequently absorbed leading to thermal equilibrium of the nuclear medium, resulting in a softer proton spectrum at the high energy end. Based on the INC model predictions the K/sup +/ induced reactions could be studied to search for the ''true resonances'' beyond 1 GeV K/sup +/ energy. 10 refs., 5 figs

    Neutron cross sections

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    Neutron Cross SectionsIn addition to the extensive list of detailed individual resonance parameters for each isotope, this book contains thermal cross sections and average resonance parameters, as well as a short survey of the physics of thermal and resonance neutrons with emphasis on evaluation methods
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