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Collective states, single-particle states, and "stapler" mechanism in 117In

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【作者】 白洪斐王守宇吴晓光许文政曾文彪李志泉刘晨贾慧亓斌王恩宏李广生郑云李聪博王硕孙大鹏韩星池张弘燚张乃波

【Author】 Hong-Fei Bai;Shou-Yu Wang;Xiao-Guang Wu;Wen-Zheng Xu;Wen-Biao Zeng;Zhi-Quan Li;Chen Liu;Hui Jia;Bin Qi;En-Hong Wang;Guang-Sheng Li;Yun Zheng;Cong-Bo Li;Shuo Wang;Da-Peng Sun;Xing-Chi Han;Hong-Yi Zhang;Nai-Bo Zhang;Shandong Provincial Key Laboratory of Nuclear Science, Nuclear Energy Technology and Comprehensive Utilization, Weihai Frontier Innovation Institute of Nuclear Technology, School of Nuclear Science, Energy and Power Engineering, Shandong University;Weihai Research Institute of Industrial Technology, Shandong University;China Institute of Atomic Energy;School of Science, Harbin Institute of Technology;

【机构】 Shandong Provincial Key Laboratory of Nuclear Science, Nuclear Energy Technology and Comprehensive Utilization, Weihai Frontier Innovation Institute of Nuclear Technology, School of Nuclear Science, Energy and Power Engineering, Shandong UniversityWeihai Research Institute of Industrial Technology, Shandong UniversityChina Institute of Atomic EnergySchool of Science, Harbin Institute of Technology

【摘要】 High-spin states of 117In are studied through the incomplete fusion reaction induced by 7Li with 116Cd.A total of 19 new levels and 22 new transitions are observed.A pair of signature partner bands with the π(g7/2,d5/2)configuration is identified.The single-particle states are described through shell-model calculations.The dipole band with the configuration of πg9/2-1■v(h11/2)2 is proposed as a "stapler" band based on the calculations of tilted axis cranking covariant density functional theory.The "stapler" mechanism in In isotopes is systematically investigated.The present study reveals the diversity of excitation modes in 117In.

【Abstract】 High-spin states of 117In are studied through the incomplete fusion reaction induced by 7Li with 116Cd.A total of 19 new levels and 22 new transitions are observed.A pair of signature partner bands with the π(g7/2,d5/2)configuration is identified.The single-particle states are described through shell-model calculations.The dipole band with the configuration of πg9/2-1■v(h11/2)2 is proposed as a "stapler" band based on the calculations of tilted axis cranking covariant density functional theory.The "stapler" mechanism in In isotopes is systematically investigated.The present study reveals the diversity of excitation modes in 117In.

【基金】 Supported by the National Natural Science Foundation of China (12225504, U2167202, 12321005, 123B2081, 12475123)
  • 【文献出处】 Chinese Physics C ,中国物理C(英文) , 编辑部邮箱 ,2026年05期
  • 【分类号】O571
  • 【下载频次】1
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