Supported by National Natural Science Foundation of China(10675127,10235030,10235020)
The strongly damped collisions of very heavy nuclei ^232Th+^250Cf at the energy range of 680--1880 MeV have been studied within the improved quantum molecular dynamics model. The production probability of primary sup...
National Natural Science Foundation of China (10475116,10535010 and 10235020);Asia-Europe Link in Nuclear Physics and Astrophysics(CN/ASIA-LINK/008(094-791))
A relativistic mean field model is used to study the ground-state properties of neutron-rich nuclei in Ca isotopes. An additional isoscalar and isovector nonlinear coupling has been introduced in the relativistic mean...
National Natural Science Foundation of China (10475116,10535010 and 10235020);Asia-Europe Link in Nuclear Physics and Astrophysics(CN/ASIA-LINK/008(094-791))
Nuclear matter incompressibility is discussed by the monopole compression modes in nuclei in the framework of a fully consistent relativistic random phase approximation, based on effective
National Natural Science Foundation of China (10475116,10535010 and 10235020);Asia-Europe Link in Nuclear Physics and Astrophysics(CN/ASIA-LINK/008(094-791))
The potential energy surfaces are calculated for neutron-deficient At isotopes from A=190 to 207 in an axially deformed relativistic mean field approach with a wide range of β2 deformation, using a quadratic constrai...
National Natural Science Foundation of China (10235030,10235020)
A large number of fusion excitation functions have been accumulated in recent decades, which provides a possibility for a systematic study on the fusion reactions. Newton et al. analyzed a total of 46 fusion excitatio...
National Natural Science Foundation of China (10235030,10235020)
In the large amplitude collective motion of nuclei including heavy ion fusion reaction (synthesis of superheavy nuclei) and fission, the macroscopic models play a very important role. The potential