Fluctuation and dissipation dynamics in fusion reactions from stochastic mean-field approach
arXiv:0902.0592 · doi:10.1103/PhysRevC.79.054606
Abstract
By projecting the stochastic mean-field dynamics on a suitable collective path during the entrance channel of heavy-ion collisions, expressions for transport coefficients associated with relative distance are extracted. These transport coefficients, which have similar forms to those familiar from nucleon exchange model, are evaluated by carrying out TDHF simulations. The calculations provide an accurate description of the magnitude and form factor of transport coefficients associated with one-body dissipation and fluctuation mechanism.
9 pages, 5 figures
References in corpus (6)
- Energy dependence of nucleus-nucleus potential close to the Coulomb barrier
- A Stochastic Mean-Field Approach For Nuclear Dynamics
- One-body energy dissipation in fusion reaction from mean-field theory
- Study of Ni+Sn Fusion with Density Constrained TDHF Formalism
- Dynamical deformation effects in subbarrier fusion of Ni+Sn
- Quantal Effects on Spinodal Instabilities in Charge Asymmetric Nuclear Matter
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