Density-constrained time-dependent Hartree-Fock calculation of O+Pb fusion cross sections
arXiv:0802.1479 · doi:10.1140/epja/i2008-10712-5
Abstract
We present a fully microscopic study of the O+Pb fusion using the density-constrained time-dependent Hartree-Fock theory. The calculated fusion cross-sections are in good agreement with the experimental data for the entire energy range indicating that the incorporation of dynamical effects is crucial in describing heavy-ion fusion.
5 pages, 3 figures
References in corpus (11)
- Hindrance of heavy-ion fusion due to nuclear incompressibility
- Energy dependence of nucleus-nucleus potential close to the Coulomb barrier
- 3-D unrestricted TDHF fusion calculations using the full Skyrme interaction
- Heavy-ion interaction potential deduced from density-constrained TDHF calculation
- Systematics of threshold incident energy for deep sub-barrier fusion hindrance
- Hindrance of ^{16}O+^{208}Pb fusion at extreme sub-barrier energies
- Existence of One-Body Barrier Revealed in Deep Sub-Barrier Fusion
- Ni+Ni fusion reaction calculated with the density-constrained time-dependent Hartree-Fock formalism
- Fusion of radioactive Sn with Ni
- Study of Ni+Sn Fusion with Density Constrained TDHF Formalism
- Potential inversion with subbarrier fusion data revisited