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Ground-state mass of 22Al and test of state-of-the-art ab initio calculations

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【作者】 孙铭泽于越王新鹏王猛李健国张玉虎K.Blaum陈祖毅陈瑞九邓涵宇付超义葛文文黄文嘉焦红扬李红蕙李宏福罗胤芳廖挺Yu.A.Litvinov司敏帅鹏史金阳王茜邢元明徐星徐瑚珊许甫荣袁琪T.Yamaguchi颜鑫亮杨建成原有进周小红周旭张敏曾奇

【Author】 M.Z.Sun;Y.Yu;X.P.Wang;M.Wang;J.G.Li;Y.H.Zhang;K.Blaum;Z.Y.Chen;R.J.Chen;H.Y.Deng;C.Y.Fu;W.W.Ge;W.J.Huang;H.Y.Jiao;H.H.Li;H.F.Li;Y.F.Luo;T.Liao;Yu.A.Litvinov;M.Si;P.Shuai;J.Y.Shi;Q.Wang;Y.M.Xing;X.Xu;H.S.Xu;F.R.Xu;Q.Yuan;T.Yamaguchi;X.L.Yan;J.C.Yang;Y.J.Yuan;X.H.Zhou;X.Zhou;M.Zhang;Q.Zeng;CAS Key Laboratory of High Precision Nuclear Spectroscopy, Institute of Modern Physics, Chinese Academy of Sciences;School of Nuclear Science and Technology, University of Chinese Academy of Sciences;Max-Planck-Institut für Kernphysik;GSI Helmholtzzentrum für Schwerionenforschung;Advanced Energy Science and Technology Guangdong Laboratory;State Key Laboratory of Nuclear Physics and Technology, School of Physics, Peking University;Department of Physics, Saitama University;School of Nuclear Science and Engineering, East China University of Technology;

【机构】 CAS Key Laboratory of High Precision Nuclear Spectroscopy, Institute of Modern Physics, Chinese Academy of SciencesSchool of Nuclear Science and Technology, University of Chinese Academy of SciencesMax-Planck-Institut für KernphysikGSI Helmholtzzentrum für SchwerionenforschungAdvanced Energy Science and Technology Guangdong LaboratoryState Key Laboratory of Nuclear Physics and Technology, School of Physics, Peking UniversityDepartment of Physics, Saitama UniversitySchool of Nuclear Science and Engineering, East China University of Technology

【摘要】 The ground-state mass excess of the Tz=-2 drip-line nucleus 22 A1 is measured for the first time as18103(10) keV using the newly-developed Bρ-defined isochronous mass spectrometry method at the cooler storage ring in Lanzhou.The new mass excess value allowed us to determine the excitation energies of the two low-lying 1+states in 22 Al with significantly reduced uncertainties of 51 keV.When compared to the analogue states in its mirror nucleus 22F,the mirror energy differences of the two 1+states in the 22A1-22F mirror pair are determined to be-625(51) keV and-330(51) keV.The excitation energies and mirror energy differences are used to test the state-ofthe-art ab initio valence-space in-medium similarity renormalization group calculations with four sets of interactions derived from the chiral effective field theory.The mechanism leading to the large mirror energy differences is investigated and attributed to the occupation of the πs1/2 orbital.

【Abstract】 The ground-state mass excess of the Tz=-2 drip-line nucleus 22 A1 is measured for the first time as18103(10) keV using the newly-developed Bρ-defined isochronous mass spectrometry method at the cooler storage ring in Lanzhou.The new mass excess value allowed us to determine the excitation energies of the two low-lying 1+states in 22 Al with significantly reduced uncertainties of 51 keV.When compared to the analogue states in its mirror nucleus 22F,the mirror energy differences of the two 1+states in the 22A1-22F mirror pair are determined to be-625(51) keV and-330(51) keV.The excitation energies and mirror energy differences are used to test the state-ofthe-art ab initio valence-space in-medium similarity renormalization group calculations with four sets of interactions derived from the chiral effective field theory.The mechanism leading to the large mirror energy differences is investigated and attributed to the occupation of the πs1/2 orbital.

【基金】 Supported in part by the Strategic Priority Research Program of Chinese Academy of Sciences (XDB34000000);the CAS Project for Young Scientists in Basic Research (YSBR-002);the National Nature Science Foundation of China (12135017, 12121005, 11975280, 12105333, 12205340, 12322507, 12305126, 12305151);the Gansu Natural Science Foundation (22JR5RA123, 23JRRA614);the National Key R&D Program of China (2021YFA1601500);the Support from the Youth Innovation Promotion Association of Chinese Academy of Sciences (2021419, 2022423);the support from Young Scholar of Regional Development;CAS ([2023]15)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2024年03期
  • 【分类号】O571
  • 【下载频次】3
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