6 papers · 1 filter
Ab initio mapping of the boundary of the island of inversion
E. F. Zhou, C. R. Ding, Q. Y. Luo +2
Starting from a chiral two- plus three-nucleon interaction, we perform a systematic study of the low-lying states of neutron-rich nuclei around using the in-medium generator…
From spin to pseudospin symmetry: The origin of magic numbers in nuclear structure
C. R. Ding, C. C. Wang, J. M. Yao +3
Magic numbers lie at the heart of nuclear structure, reflecting enhanced stability in nuclei with closed shells. While the emergence of magic numbers beyond 20 is commonly attribut…
Ab initio nuclear shape coexistence and emergence of island of inversion around
E. F. Zhou, C. R. Ding, J. M. Yao +4
We extend a nuclear ab initio framework based on chiral two- and three-nucleon interactions to investigate shape coexistence and the degradation of the magic number in both…
Statistical uncertainty quantification for multireference covariant density functional theory
X. Zhang, C. C. Wang, C. R. Ding +1
We present a theoretical framework to quantify statistical uncertainties in covariant density functional theory (CDFT) for both nuclear matter and finite nuclei, based on a relativ…
Subspace-projected multireference covariant density functional theory
X. Zhang, C. C. Wang, C. R. Ding +1
Multireference density functional theory (MR-DFT) has been a pivotal method for studying nuclear low-lying states and neutrinoless double-beta () decay. However, quantifying…
Nuclear matrix elements of neutrinoless double-beta decay in covariant density functional theory with different mechanisms
C. R. Ding, Gang Li, J. M. Yao
Nuclear matrix elements (NMEs) for neutrinoless double-beta () decay in candidate nuclei play a crucial role in interpreting results from current experiments and in designing…