Enhanced Tensor-Force Contribution in Collision Dynamics
arXiv:1012.3363 · doi:10.1103/PhysRevC.84.014616
Abstract
The tensor and spin-orbit forces contribute essentially to the formation of the spin mean field, and give rise to the same dynamical effect, namely spin polarization. In this paper, based on time-dependent density functional calculations, we show that the tensor force, which usually acts like a small correction to the spin-orbit force, becomes more important in heavy-ion reactions and the effect increases with the mass of the system.
Phys. Rev. C in press; the title is changed to "Enhanced spin-current tensor contribution in collision dynamics"
References in corpus (6)
- Novel features of nuclear forces and shell evolution in exotic nuclei
- Spin-orbit splitting and the tensor component of the Skyrme interaction
- 3-D unrestricted TDHF fusion calculations using the full Skyrme interaction
- Tensor part of the Skyrme energy density functional. II: Deformation properties of magic and semi-magic nuclei
- Tensor interaction contributions to single-particle energies
- Spin-Excitation Mechanisms in Skyrme-Force Time-Dependent Hartree-Fock
Cited by in corpus (19)
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions
- Time-dependent Hartree-Fock calculations for multinucleon transfer processes in Ca+Sn, Ca+Pb, and Ni+Pb reactions
- Heavy-ions collisions and fission dynamics with the time-dependent Hartree-Fock theory and its extensions
- TDHF Theory and Its Extensions for the Multinucleon Transfer Reaction: a Mini Review
- Low-Energy Heavy-Ion Reactions and the Skyrme Effective Interaction
- Microscopic studies of production cross sections in multinucleon transfer reaction Ni+Sn
- The unrestricted Skyrme-tensor time-dependent Hartree-Fock and its application to the nuclear response from spherical to triaxial nuclei
- Enhanced nucleon transfer in tip collisions of U+Sn
- Dissipation dynamics and spin-orbit force in time-dependent Hartree-Fock theory
- The influence of tensor force on the microscopic heavy-ion interaction potential
- Probing in-medium spin-orbit potential with intermediate-energy heavy-ion collisions
- Spin-orbit coupling and the up-down differential transverse flow in intermediate-energy heavy-ion collisions
- Dynamical effects of spin-dependent interactions in low- and intermediate-energy heavy-ion reactions
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions (2nd edition)
- Energy-dependent existence of soliton in the synthesis of chemical elements
- Effects of the tensor force on low-energy heavy-ion fusion reactions: A mini review
- Nucleon localization function in rotating nuclei
- Effect of the spin-orbit interaction on flows in heavy-ion collisions at intermediate energies
- Inertial energy dissipation in nuclear dynamics