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Absolute rate coefficients for dielectronic recombination of Na-like Kr25+

  • Z. K. Huang
  • , W. Q. Wen
  • , S. X. Wang
  • , N. Khan
  • , H. B. Wang
  • , C. Y. Chen
  • , C. Y. Zhang
  • , S. P. Preval
  • , N. R. Badnell
  • , W. L. Ma
  • , X. Liu
  • , D. Y. Chen
  • , X. L. Zhu
  • , D. M. Zhao
  • , L. J. Mao
  • , X. M. Ma
  • , J. Li
  • , M. T. Tang
  • , R. S. Mao
  • , D. Y. Yin
  • W. Q. Yang, J. C. Yang, Y. J. Yuan, L. F. Zhu, X. M. Ma

Research output: Contribution to journalArticlepeer-review

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Abstract

The absolute rate coefficients for dielectronic recombination (DR) of sodiumlike krypton ions were measured by employing the electron-ion merged-beam technique at the heavy-ion storage ring CSRm at the Institute of Modern Physics in Lanzhou, China. The measured DR spectrum covers the electron-ion collision energy range of 0-70 eV, encompassing all of the DR resonances due to 3s→3p and part of the DR resonances from 3s→3d(Δn=0) and 3s→4l(Δn=1) core excitations. A series of peaks associated with DR processes have been identified by the Rydberg formula. The experimental DR results are compared with the theoretical calculations using a relativistic configuration interaction flexible atomic code and the distorted-wave collision package autostructure. A very good agreement has been achieved between the experimental results and the theoretical calculations by considering the strong mixing among the low-energy resonances in both calculations. The experimentally derived DR spectrum is then convolved with a Maxwellian-Boltzmann distribution to obtain the temperature dependent plasma recombination rate coefficients and compared with previously available results from the literature. The present experimental result yields a precise plasma rate coefficients at the low temperature range up to ∼1×106K and the calculated data by Altun et al. [Z. Altun, A. Yumak, N. R. Badnell, S. D. Loch, and M. S. Pindzola, Astron. Astrophys. 447, 1165 (2006)10.1051/0004-6361:20053278] provide reliable plasma rate coefficients at high temperature range above 2×106K.

Original languageEnglish
Article number062823
Number of pages11
JournalPhysical Review A
Volume102
Issue number6
DOIs
Publication statusPublished - 29 Dec 2020

Funding

This work is partly supported by the National Key R&D Program of China under Grant No. 2017YFA0402300, the National Natural Science Foundation of China through Grants No. U1932207, No. 11904371, No. U1732133, and No. 11674066, the Strategic Priority Research Program of Chinese Academy of Sciences Grants No. XDB34020000 and No. XDB21030300, and Key Research Program of Frontier Sciences, CAS, Grant No. QYZDY-SSW-SLH006. We are grateful for the fruitful discussion of data analysis with S. Schippers. W.Q.W. acknowledges the support by the Youth Innovation Promotion Association CAS. N.R.B. acknowledges the support of the UK APAP Network STFC Grant No. ST/R000743/1. The authors thank the staff of the Accelerator Department for the smooth running of the CSR accelerator complex.

Keywords

  • absolute rate coefficients
  • dielectronic recombination
  • Na-like Kr 25 +

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