Abstract

The reaction $^{58}\mathrm{Ni}+^{238}\mathrm{U}$ is investigated within the framework of dinuclear system model. The incident energy effects on production cross sections of actinide nuclei are studied. It is found that the optimal incident energies for producing neutron-deficient isotopes are larger than those for production of neutron-rich ones, and for producing neutron-deficient isotopes the optimal incident energies strongly depend on neutron richness of objective products.

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