activity
20242026
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nucl-th2026

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…

nucl-th2026

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…

nucl-th2026

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…

nucl-th2025

Microscopic model for yields and total kinetic energy in nuclear fission

B. Li, D. Vretenar, T. Nikši\' c +2

An extension of time-dependent density functional theory (TDDFT), the generalized time-dependent generator coordinate method (TDGCM), is applied to a study of induced nuclear fissi…

nucl-th2024

Entanglement in multinucleon transfer reactions

B. Li, D. Vretenar, T. Nikšić +3

Nuclear reactions present an interesting case for studies of the time-evolution of entanglement between complex quantum systems. In this work, the time-dependent nuclear density fu…

nucl-th2024

Ternary quasifission in collisions of actinide nuclei

D. D. Zhang, B. Li, D. Vretenar +4

The microscopic framework of time-dependent covariant density functional theory is applied to a systematic study of ternary quasifission in collisions of pairs of U nuclei.…