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- W2068841233 abstract "The Boltzmann master equation model has been applied to the question of precompound nucleon deexcitation of reactions induced by 10--100 MeV/nucleon (c.m.) heavy ions. Test systems of $^{16}$O${+mathrm{}}^{60}$Ni and $^{27}$Al${+mathrm{}}^{86}$Kr were selected. Experimental neutron spectra in coincidence with evaporation residue and fission fragments from the $^{20}$Ne${+mathrm{}}^{165}$Ho system (due to Holub et al.) were reproduced quite well by the master equation with exciton numbers between 20 and 23. Exciton values of projectile mass and projectile mass plus 3 were therefore used in the extrapolations of the master equation. Results show major fractions of the excitation and up to 35 nucleons removed during the coalescence-equilibration period. The linear momentum transfer predicted by the master equation is shown to be in good agreement with a broad range of data. Calculations are provided as to the range of angular momenta which may be carried off by the precompound cascade." @default.
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- W2068841233 title "Precompound decay calculations for reactions induced by 10<i>–</i>100 MeV/nucleon heavy ions" @default.
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- W2068841233 doi "https://doi.org/10.1103/physrevc.31.1245" @default.
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