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- W2037808546 abstract "We present data obtained by bombarding light nuclei with beams of 11B, 12C and 14N at energies of about 10 MeV/nucleon. Reactions involving transfers of various numbers of nucleons were investigated and the spectra of the detected ions correspond to a wide range of excitation energies in the residual nuclei. The results characteristically show only a few strong peaks in each spectrum and the cross sections exhibit many of the features of direct reactions. We explain the apparent high degree of selectivity in terms of the interplay of reaction mechanisms and the structure of the strongly populated states. Firstly, it is shown that a simple semiclassical model of the reaction process indicates that states of the final nucleus with high spin are greatly favoured. On the other hand, it is demonstrated that the shell-model gives a reasonably complete explanation for the occurence of such high spin states at the appropriate excitation energies. These shell-model states are found to be dominated by configuration with the structure of a multi-nucleon cluster, in the ground state of its internal motion, orbiting the core nucleus so that the centre of mass motion of the cluster carries all the excitation quanta." @default.
- W2037808546 created "2016-06-24" @default.
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- W2037808546 date "1974-08-01" @default.
- W2037808546 modified "2023-10-18" @default.
- W2037808546 title "Nuclear structure of light nuclei using the selectivity of high energy transfer reactions with heavy ions" @default.
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- W2037808546 doi "https://doi.org/10.1016/0370-1573(74)90045-3" @default.
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