Abstract
States in20Ne were populated by the10B(16O,6Li) reaction, and levels were observed up to 11 MeV in excitation energy. Cross sections were measured at 7° (lab) for bombarding energies from 44.4 to 46 MeV in 400 keV intervals. The reaction appears to be predominantly due to compound nucleus formation, and good agreement was found between the measured cross sections and Hauser-Feshbach calculations, assuming the known spin values of20Ne.
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Research sponsored by the U.S. Atomic Energy Commission under contract with Union Carbide Corporation.
Supported in part by Instituto Nacional de Energia Nuclear, Mexico.
Research participation at Oak Ridge National Laboratory sponsored in part by Oak Ridge Associated Universities.
The programming of the Hauser-Feshbach program HELGA by S. K. Penny is gratefully acknowledged. We are indebted to R.E. Zedler for the design and construction of the proportional detector. Valuable discussions were held with Dr. J.B. McGrory, Professor R. Middleton, and Professor R. Stokstad concerning the data and its analysis.
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Ford, J.L.C., del Campo, J.G., Robinson, R.L. et al. Measurements and Hauser-Feshbach analysis of the10B(16O,6Li)20Ne reaction. Z. Physik 269, 147–153 (1974). https://doi.org/10.1007/BF01669056
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DOI: https://doi.org/10.1007/BF01669056