4.5 Article

Effect of cluster transfer on the production of neutron-rich nuclides near N=126 in multinucleon-transfer reactions

Journal

PHYSICAL REVIEW C
Volume 108, Issue 5, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.108.L051601

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The effects of cluster transfer and dynamical deformation on fragment formation were investigated in multinucleon-transfer reactions. Cluster transfer was found to increase the transferring nucleons and lead to a broad mass distribution. The production mechanism of neutron-rich isotopes and the cross sections for their production were thoroughly analyzed and estimated.
The cluster transfer in multinucleon-transfer reactions near Coulomb barrier energies is implemented into the master equations in the dinuclear system model, in which deuterons, tritons, 3He, and alpha particles are taken into account. The effects of cluster transfer and dynamical deformation on the formation of primary and secondary fragments are systematically investigated. It is found that the inclusion of cluster transfer is favorable for fragment formation by increasing the transferring nucleons and leads to a broad mass distribution. The isotopic cross sections of wolfram, osmium, radon, and francium in 136Xe +208Pb reactions at an incident energy of Ec.m. = 450 MeV are nicely consistent with the Argonne data. The new neutron-rich isotopes of wolfram and osmium are predicted with cross sections above 10 nb. The production mechanism of neutron-rich heavy nuclei near N = 126 in 58 ,64 ,72Ni + 198Pt reactions is investigated thoroughly. The cross sections for producing the neutron-rich isotopes of platinum, iridium, osmium, and rhenium in the multinucleon-transfer reactions 64Ni + 198Pt and 72Ni + 198Pt at center-of-mass energies of 220 and 230 MeV are estimated and proposed for future experiments.

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