Abstract

The proton and neutron transfer in deep-inelastic heavy-ion collisions (DIC) is investigated in the framework of the microscopical model. It is shown that the isospin dependence of the single-particle potential is important for the correct description of the experimental data. For illustration different characteristics of the reactions238U+40,48Ca,197Au+40Ar and100Mo+40Ar are calculated. The qualitative agreement of the theoretical results with experimental data is demonstrated. Model calculations indicate that theN/Z-equilibrium process is monotonic. The calculated isotope production cross sections of light elements are in agreement with the Qgg-systematics.

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