Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8187334 | Physics Letters B | 2018 | 6 Pages |
Abstract
The multinucleon transfer reaction of Xe136+198Pt at Elab=7.98MeV/nucleon is investigated by using the improved quantum molecular dynamics model. The quasielastic, deep-inelastic, and quasifission collision mechanisms are studied via analyzing the angular distributions of fragments and the energy dissipation processes during the collisions. The measured isotope production cross sections of projectile-like fragments are reasonably well reproduced by the calculation of the ImQMD model together with the GEMINI code. The isotope production cross sections for the target-like fragments and double differential cross sections of 199Pt, 203Pt, and 208Pt are calculated. It is shown that about 50 new neutron-rich heavy nuclei can be produced via deep-inelastic collision mechanism, where the production cross sections are from 10â3 to 10â6mb. The corresponding emission angle and the kinetic energy for these new neutron-rich nuclei locate at 40â-60â and 100-200 MeV, respectively.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
Cheng Li, Peiwei Wen, Jingjing Li, Gen Zhang, Bing Li, Xinxin Xu, Zhong Liu, Shaofei Zhu, Feng-Shou Zhang,