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Absolute dielectronic recombination rate coefficients of highly charged ions at the storage ring CSRm and CSRe

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【作者】 黄忠魁汪书兴汶伟强汪寒冰马万路陈重阳张春雨陈冬阳黄厚科邵林刘鑫周晓鹏冒立军李杰马晓明汤梅堂杨建成原有进张少锋朱林繁马新文

【Author】 Zhongkui Huang;Shuxing Wang;Weiqiang Wen;Hanbing Wang;Wanlu Ma;Chongyang Chen;Chunyu Zhang;Dongyang Chen;Houke Huang;Lin Shao;Xin Liu;Xiaopeng Zhou;Lijun Mao;Jie Li;Xiaoming Ma;Meitang Tang;Jiancheng Yang;Youjin Yuan;Shaofeng Zhang;Linfan Zhu;Xinwen Ma;Institute of Modern Physics, Chinese Academy of Sciences;University of Chinese Academy of Sciences;Hefei National Research Center for Physical Sciences at Microscale and Department of Modern Physics,University of Science and Technology of China;Shanghai EBIT Laboratory, Institute of Modern Physics, Fudan University, and the Key Laboratory of Applied Ion Beam Physics,Chinese Ministry of Education;

【通讯作者】 汶伟强;朱林繁;马新文;

【机构】 Institute of Modern Physics, Chinese Academy of SciencesUniversity of Chinese Academy of SciencesHefei National Research Center for Physical Sciences at Microscale and Department of Modern Physics,University of Science and Technology of ChinaShanghai EBIT Laboratory, Institute of Modern Physics, Fudan University, and the Key Laboratory of Applied Ion Beam Physics,Chinese Ministry of Education

【摘要】 Dielectronic recombination(DR) is one of the dominant electron–ion recombination mechanisms for most highly charged ions(HCIs) in cosmic plasmas, and thus, it determines the charge state distribution and ionization balance therein.To reliably interpret spectra from cosmic sources and model the astrophysical plasmas, precise DR rate coefficients are required to build up an accurate understanding of the ionization balance of the sources. The main cooler storage ring(CSRm) and the experimental cooler storage ring(CSRe) at the Heavy-Ion Research Facility in Lanzhou(HIRFL) are both equipped with electron cooling devices, which provide an excellent experimental platform for electron-ion collision studies for HCIs. Here, the status of the DR experiments at the HIRFL-CSR is outlined, and the DR measurements with Na-like Kr25+ ions at the CSRm and CSRe are taken as examples. In addition, the plasma recombination rate coefficients for Ar12+,14+, Ca14+,16+,17+, Ni19+, and Kr25+ ions obtained at the HIRFL-CSR are provided. All the data presented in this paper are openly available at https://doi.org/10.57760/sciencedb.j00113.00092.

【Abstract】 Dielectronic recombination(DR) is one of the dominant electron–ion recombination mechanisms for most highly charged ions(HCIs) in cosmic plasmas, and thus, it determines the charge state distribution and ionization balance therein.To reliably interpret spectra from cosmic sources and model the astrophysical plasmas, precise DR rate coefficients are required to build up an accurate understanding of the ionization balance of the sources. The main cooler storage ring(CSRm) and the experimental cooler storage ring(CSRe) at the Heavy-Ion Research Facility in Lanzhou(HIRFL) are both equipped with electron cooling devices, which provide an excellent experimental platform for electron-ion collision studies for HCIs. Here, the status of the DR experiments at the HIRFL-CSR is outlined, and the DR measurements with Na-like Kr25+ ions at the CSRm and CSRe are taken as examples. In addition, the plasma recombination rate coefficients for Ar12+,14+, Ca14+,16+,17+, Ni19+, and Kr25+ ions obtained at the HIRFL-CSR are provided. All the data presented in this paper are openly available at https://doi.org/10.57760/sciencedb.j00113.00092.

【基金】 supported by the National Natural Science Foundation of China (Grant Nos. U1932207, 11904371, and 12104437);the Strategic Priority Research Program of Chinese Academy of Sciences (Grant No. XDB34020000)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年07期
  • 【分类号】TL594
  • 【下载频次】4
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