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Nuclear mass table in deformed relativistic Hartree-Bogoliubov theory in continuum, II: Even-$Z$ nuclei

Authors :
DRHBc Mass Table Collaboration
Guo, Peng
Cao, Xiaojie
Chen, Kangmin
Chen, Zhihui
Cheoun, Myung-Ki
Choi, Yong-Beom
Lam, Pak Chung
Deng, Wenmin
Dong, Jianmin
Du, Pengxiang
Du, Xiaokai
Duan, Kangda
Fan, Xiaohua
Gao, Wei
Geng, Lisheng
Ha, Eunja
He, Xiao-Tao
Hu, Jinniu
Huang, Jingke
Huang, Kun
Huang, Yanan
Huang, Zidan
Da Hyung, Kim
Chan, Hoi Yat
Jiang, Xiaofei
Kim, Seonghyun
Kim, Youngman
Lee, Chang-Hwan
Lee, Jenny
Li, Jian
Li, Minglong
Li, Zhipan
Li, Zhengzheng
Lian, Zhanjiang
Liang, Haozhao
Liu, Lang
Lu, Xiao
Liu, Zhi-Rui
Meng, Jie
Meng, Ziyan
Mun, Myeong-Hwan
Niu, Yifei
Niu, Zhongming
Pan, Cong
Peng, Jing
Qu, Xiaoying
Papakonstantinou, Panagiota
Shang, Tianshuai
Shang, Xinle
Shen, Caiwan
Shen, Guofang
Sun, Tingting
Sun, Xiang-Xiang
Wang, Sibo
Wang, Tianyu
Wang, Yiran
Wang, Yuanyuan
Wu, Jiawei
Wu, Liang
Wu, Xinhui
Xia, Xuewei
Xie, Huihui
Yao, Jiangming
Ip, Ip Kwan Yau
Yiu, To Chung
Yu, Jianghan
Yu, Yangyang
Zhang, Kaiyuan
Zhang, Shijie
Zhang, Shuangquan
Zhang, Wei
Zhang, Xiaoyan
Zhang, Yanxin
Zhang, Ying
Zhang, Yingxun
Zhang, Zhenhua
Zhao, Qiang
Zhao, Yingchun
Zheng, Ruyou
Zhou, Chang
Zhou, Shan-Gui
Zou, Lianjian
Source :
Peng Guo, et. al. (DRHBc Mass Table Collaboration), Atomic Data and Nuclear Data Tables 158 (2024) 101661
Publication Year :
2024

Abstract

The mass table in the deformed relativistic Hartree-Bogoliubov theory in continuum (DRHBc) with the PC-PK1 density functional has been established for even-$Z$ nuclei with $8\le Z\le120$, extended from the previous work for even-even nuclei [Zhang $\it{et.~al.}$ (DRHBc Mass Table Collaboration), At. Data Nucl. Data Tables 144, 101488 (2022)]. The calculated binding energies, two-nucleon and one-neutron separation energies, root-mean-square (rms) radii of neutron, proton, matter, and charge distributions, quadrupole deformations, and neutron and proton Fermi surfaces are tabulated and compared with available experimental data. A total of 4829 even-$Z$ nuclei are predicted to be bound, with an rms deviation of 1.477 MeV from the 1244 mass data. Good agreement with the available experimental odd-even mass differences, $\alpha$ decay energies, and charge radii is also achieved. The description accuracy for nuclear masses and nucleon separation energies as well as the prediction for drip lines is compared with the results obtained from other relativistic and nonrelativistic density functional. The comparison shows that the DRHBc theory with PC-PK1 provides an excellent microscopic description for the masses of even-$Z$ nuclei. The systematics of the nucleon separation energies, odd-even mass differences, pairing energies, two-nucleon gaps, $\alpha$ decay energies, rms radii, quadrupole deformations, potential energy curves, neutron density distributions, and neutron mean-field potentials are discussed.<br />Comment: 394 pages, 17 figures, 2 tables, published in Atomic Data and Nuclear Data Tables, data file in the TXT form is available for download under "Ancillary files"

Details

Database :
arXiv
Journal :
Peng Guo, et. al. (DRHBc Mass Table Collaboration), Atomic Data and Nuclear Data Tables 158 (2024) 101661
Publication Type :
Report
Accession number :
edsarx.2402.02935
Document Type :
Working Paper
Full Text :
https://doi.org/10.1016/j.adt.2024.101661