Nucleon exchange in heavy-ion collisions within stochastic mean-field approach
arXiv:1407.0140 · doi:10.1103/PhysRevC.90.024613
Abstract
Nucleon exchange mechanism is investigated in deep-inelastic symmetric heavy-ion collisions in the basis of the Stochastic Mean-Field approach. By extending the previous work to off-central collisions, analytical expression is deduced for diffusion coefficient of nucleon exchange mechanism. Numerical calculations are carried out for Ca + Ca and Zr + Zr systems and the results are compared with the phenomenological nucleon exchange model. Also, calculations are compared with the available experimental results of deep-inelastic collisions between calcium nuclei.
8 pages, 7 figures
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Cited by in corpus (9)
- TDHF Theory and Its Extensions for the Multinucleon Transfer Reaction: a Mini Review
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- Multi-Nucleon Transfer in Central Collisions of U + U
- Quantal description of nucleon exchange in stochastic mean-field approach
- Quantal Nucleon Diffusion I: Central Collisions of Symmetric Nuclei
- Importance of realistic phase space representations of initial quantum fluctuations using the stochastic mean-field approach for fermions
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions (2nd edition)
- Entanglement in multinucleon transfer reactions
- Time-dependent mean-field investigations of the quasifission process