7 papers
Intrinsic generation of angular momenta and entanglement in fission
B. Li, D. D. Zhang, D. Vretenar +3
Nuclear time-dependent density functional theory is used to investigate spin generation and entanglement of fission fragments in spontaneous fission of Cf, incorporating bo…
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…
Microscopic triaxial quadrupole-octupole collective Hamiltonian for low-energy nuclear excitations
J. Xiang, J. Zhao, Z. P. Li +1
We present a microscopic triaxial quadrupole-octupole collective Hamiltonian (TQOCH) that unifies collective rotations, quadrupole-octupole vibrations, and their couplings to model…
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…