6 papers
Sensitivity of neutrinoless double beta decays from a combined analysis of ground and excited states
C. R. Ding, K. Han, S. B. Wang +1
Next-generation neutrinoless double-beta () decay experiments, with projected half-life sensitivities approaching years, aim to probe the entire parameter space…
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…
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…
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, quantifyi…
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…