arXiv:1705.11172·v1·Nuclear Theory
Effect of Pauli repulsion and transfer on fusion
C. Simenel · K. Godbey · A. S. Umar · K. Vo-Phuoc · M. Dasgupta · D. J. Hinde · E. C. Simpson
Abstract
The effect of the Pauli exclusion principle on the nucleus-nucleus bare potential is studied using a new density-constrained extension of the Frozen-Hartree-Fock (DCFHF) technique. The resulting potentials exhibit a repulsion at short distance. The charge product dependence of this Pauli repulsion is investigated. Dynamical effects are then included in the potential with the density-constrained time-dependent Hartree-Fock (DCTDHF) method. In particular, isovector contributions to this potential are used to investigate the role of transfer on fusion, resulting in a lowering of the inner part of the potential for systems with positive Q-value transfer channels.
Comments: Proceedings of an invited talk given at FUSION17, Hobart, Tasmania, AU (20-24 February, 2017)