6 papers
Configuration-interaction time-dependent density functional theory for nuclear dynamics
Y. P. Wang, B. Li, D. Vretenar +3
A configuration-interaction time-dependent density functional theory (CI-TDDFT) for nuclear dynamics is developed. In this framework, the correlated nuclear many-body wave function…
De-excitation effects on entanglement in multi-nucleon transfer reactions
Y. C. Yang, D. D. Zhang, D. Vretenar +4
This study quantifies the impact of nuclear de-excitation on correlations in multi-nucleon transfer (MNT) reactions. To bridge the gap between initial collision dynamics and final…
Pairing correlations, orientations and quantum fluctuations in one- and two-nucleon transfer reactions at sub-barrier energies
Dandan Zhang, Bo Li, Dario Vretenar +3
This work investigates one- and two-neutron transfer in the reaction at sub-barrier energies using a microscopic framework based on time-depende…
Intrinsic spin distributions in multinucleon transfer reactions
Dan Dan Zhang, Dario Vretenar, Tamara NikÅ¡iÄ +2
Time-dependent covariant density functional theory (TD-CDFT) combined with angular momentum projection is developed and applied to study multinucleon transfer (MNT) reactions, with…
Nuclear Physics Confronts Relativistic Collisions Of Isobars
Giuliano Giacalone, Jiangyong Jia, Vittorio Somà +43
High-energy collisions involving the isobars Zr and Ru have been performed in 2018 at Brookhaven National Laboratory's Relativistic Heavy Ion Collider (RHIC) a…
Large quadrupole deformation in Ne challenges rotor model and modern theory: urging for clusters in nuclei
C. V. Mehl, J. N. Orce, C. Ngwetsheni +31
The spectroscopic quadrupole moment of the first excited state, , at 1.634 MeV in Ne was determined from sensitive reorientation-effect Coulomb-excitation…