From the 1 of 6 linked papers with an AI index.
6 papers
Microscopic Statistical Calculation of Nuclear Level Density Based on Relativistic Density Functional Theory
Zi-Cheng Wang, Peng-Xiang Du, Jian Li +2
A microscopic statistical model based on the relativistic density functional theory (RDFT) is developed to calculate the nuclear level density (NLD). The approach employs self-cons…
Microscopic Study of Charge Properties in Halo Nuclei
Yun Dong Wang, Hui Hui Xie, Tian Shuai Shang +3
The paper uses relativistic continuum Hartree‑Bogoliubov theory with electromagnetic corrections to study charge distributions in neutron‑halo nuclei of neon and phosphorus isotope…
Nuclear level densities in the relativistic Hartree-Bogoliubov plus combinatorial framework
Pengxiang Du, Jian Li
A systematic study of nuclear level densities has been carried out within the relativistic Hartree-Bogoliubov plus combinatorial framework. Calculations were performed for even-eve…
Predictions of charge density distributions for nuclei with
Yun Dong Wang, Tian Shuai Shang, Hui Hui Xie +3
A deep neural network (DNN) has been developed to accurately predict nuclear charge density distributions for nuclei with proton numbers . By incorporating essential nucl…
Bridging Theory and Data: Correcting Nuclear Mass Models with Interpretable Machine Learning
Yanhua Lu, Tianshuai Shang, Pengxiang Du +2
Nuclear mass prediction is one of the core issues in nuclear physics research, yet it faces the challenge of small-sample datasets with high complexity. This study introduces the K…
The coexistence of possible magnetic and chiral rotation in and : a microscopic investigation
Jia-nuo Zang, Duo Chen, Rui Guo +3
A microscopic investigation of the rotational properties in and was carried out using the three-dimensional tilted axis cranking covariant d…