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Nuclear mass table in deformed relativistic Hartree–Bogoliubov theory in continuum, I: Even–even nucleiHighly Cited Paper

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Title
Nuclear mass table in deformed relativistic Hartree–Bogoliubov theory in continuum, I: Even–even nuclei
Author(s)
Zhang, Kaiyuan; Cheoun, Myung-Ki; Choi, Yong-Beom; Chong, Pooi Seong; Dong, Jianmin; Dong, Zihao; Du, Xiaokai; Geng, Lisheng; Ha, Eunja; He, Xiao-Tao; Heo, Chan; Ho, Meng Chit; Eun Jin In; Kim, Seonghyun; Youngman Kim; Lee, Chang-Hwan; Lee, Jenny; Li, Hexuan; Li, Zhipan; Luo, Tianpeng; Meng, Jie; Mun, Myeong-Hwan; Niu, Zhongming; Pan, Cong; Panagiota Papakonstantinou; Shang, Xinle; Shen, Caiwan; Shen, Guofang; Sun, Wei; Sun, Xiang-Xiang; Tam, Chi Kin; Thaivayongnou,; Wang, Chen; Wang, Xingzhi; Wong, Sau Hei; Wu, Jiawei; Wu, Xinhui; Xia, Xuewei; Yan, Yijun; Yeung, Ryan Wai-Yen; Yiu, To Chung; Zhang, Shuangquan; Zhang, Wei; Zhang, Xiaoyan; Qiang Zhao; Zhou, Shan-Gui
Publication Date
2022-03
Journal
Atomic Data and Nuclear Data Tables, v.144
Publisher
Academic Press
Abstract
© 2022 Elsevier Inc.Ground-state properties of even–even nuclei with 8≤Z≤120 from the proton drip line to the neutron drip line have been investigated using the deformed relativistic Hartree–Bogoliubov theory in continuum (DRHBc) with the density functional PC-PK1. With the effects of deformation and continuum included simultaneously, 2583 even–even nuclei are predicted to be bound. The calculated binding energies, two-nucleon 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. The rms deviation from the 637 mass data is 1.518 MeV, providing one of the best microscopic descriptions for nuclear masses. The drip lines obtained from DRHBc calculations are compared with other calculations, including the spherical relativistic continuum Hartree–Bogoliubov (RCHB) and triaxial relativistic Hartree–Bogoliubov (TRHB) calculations with PC-PK1. The deformation and continuum effects on the limits of the nuclear landscape are discussed. Possible peninsulas consisting of bound nuclei beyond the two-neutron drip line are predicted. The systematics of the two-nucleon separation energies, two-nucleon gaps, rms radii, quadrupole deformations, potential energy curves, neutron densities, neutron mean-field potentials, and pairing energies in the DRHBc calculations are also discussed. In addition, the α decay energies extracted are in good agreement with available data.
URI
https://pr.ibs.re.kr/handle/8788114/11259
DOI
10.1016/j.adt.2022.101488
ISSN
0092-640X
Appears in Collections:
Center for Exotic Nuclear Studies(희귀 핵 연구단) > 1. Journal Papers (저널논문)
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