Time-dependent HF approach to SHE dynamics
arXiv:1412.1755 · doi:10.1016/j.nuclphysa.2015.02.011
Abstract
We employ the time-dependent Hartree-Fock (TDHF) method to study various aspects of the reactions utilized in searches for superheavy elements. These include capture cross-sections, quasifission, prediction of , and other interesting dynamical quantities. We show that the microscopic TDHF approach provides an important tool to shed some light on the nuclear dynamics leading to the formation of superheavy elements.
Contributed to "Special Issue on SHE for Nucl. Phys. A", 18 pages, 9 figures
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Cited by in corpus (25)
- TDHF Theory and Its Extensions for the Multinucleon Transfer Reaction: a Mini Review
- Low-Energy Heavy-Ion Reactions and the Skyrme Effective Interaction
- Shape evolution and collective dynamics of quasifission in TDHF
- Enhanced nucleon transfer in tip collisions of U+Sn
- Time-dependent Hartree-Fock plus Langevin approach for hot fusion reactions to synthesize the superheavy element
- Quantal diffusion approach for multinucleon transfer processes in the Ni+Pb reactions: Toward the production of unknown neutron-rich nuclei
- Deformed shell effects in Ca+Bk quasifission fragments
- Multi-Nucleon Transfer in Central Collisions of U + U
- Microscopic predictions for production of neutron rich nuclei in the reaction
- Quasifission dynamics in microscopic theories
- Two-body dissipation effects on synthesis of superheavy elements
- Challenges in Nuclear Structure Theory
- An efficient solution for Dirac equation in 3D lattice space with the conjugate gradient method
- Time-dependent covariant density functional theory in 3D lattice space: benchmark calculation for 16O + 16O reaction
- Impact of tensor force on quantum shell effects in quasifission reactions
- Quantal Nucleon Diffusion I: Central Collisions of Symmetric Nuclei
- Density-constraint Time-dependent Hartree-Fock-Bogoliubov method
- Microscopic study on fusion reactions and the effect of tensor force
- Production of super-heavy nuclei in cold fusion reactions
- Effects of the tensor force on low-energy heavy-ion fusion reactions: A mini review
- Effects of neck and nuclear orientations on the mass drift in heavy ion collisions
- Continuum damping effects in nuclear collisions associated with twisted boundary conditions
- Microscopic quasifission dynamics of the reaction
- Resonances and Reactions from Mean-Field Dynamics
- Time-dependent mean-field investigations of the quasifission process