Analysis of the effect of core structure upon dineutron correlation using antisymmetrized molecular dynamics
arXiv:1506.08358 · doi:10.1103/PhysRevC.93.024310
Abstract
We extend the method of antisymmetrized molecular dynamics to investigate dineutron correlation. We apply this method to Be as an example and investigate the motion of two neutrons around a largely deformed Be core by analyzing the two-neutron overlap function around the core. We show that the core structure plays an important role in dineutron formation and expansion from the core and that the present framework is effective for the studies of dineutron correlation.
11 pages, 5 figures
References in corpus (13)
- Nuclear Charge Radii of Be-7,9,10 and the one-neutron halo nucleus Be-11
- Coexistence of BCS and BEC-like pair structures in halo nuclei
- Generic strong coupling behavior of Cooper pairs in the surface of superfluid nuclei
- Democratic decay of 6Be exposed by correlations
- Two-proton radioactivity and three-body decay. III. Integral formulae for decay widths in a simplified semianalytical approach
- Three-body decay of Be
- Dineutron structure in He
- First observation of Li ground state
- Novel cluster states in Be
- Three-body correlations in the ground-state decay of 26O
- Dineutron formation and breaking in He
- Proton and neutron correlations in B
- Sensitivity of three-body decays to the reactions mechanism and the initial structure by example of 6Be