Electron impact ionization cross sections of highly charged open L-shell tungsten ions

Author:

He Zhencen1ORCID,Niu Ben1,Xiong Gang1,Huang Liangyu12,Liu Jialin1ORCID,Liu Liang3ORCID,Hu Zhimin4,Chen Chongyang12ORCID,Wei Baoren12ORCID,Zou Yaming12,Yao Ke12ORCID

Affiliation:

1. Shanghai EBIT Laboratory, Key Laboratory of Nuclear Physics and Ion-Beam Application (MOE), Fudan University 1 , Shanghai 200433, China

2. Department of Nuclear Science and Technology, Fudan University 2 , Shanghai 200433, China

3. Southwestern Institute of Physics 3 , Chengdu 610041, China

4. Key Laboratory of Radiation Physics and Technology of Ministry of Education, Institute of Nuclear Science and Technology, Sichuan University 4 , Chengdu 610064, China

Abstract

L-shell electron-impact ionization (EII) cross sections for highly charged tungsten ions were measured at incident electron energies of 29.10 and 38.92 keV using the Shanghai-EBIT. Resolved x-rays from radiative recombination (RR) processes were recorded with a high-purity Ge detector in a static electron energy scanning mode. Absolute EII cross sections were obtained by normalizing to the theoretical RR cross sections. The experimental results were compared with the calculated results using the relativistic distorted-wave method implemented in the flexible atomic code and the relativistic Lotz semi-empirical equation. The measurements showed general agreement with the calculated results by two theoretical methods for Li- to N-like W ions. The experimental uncertainties are not sufficiently small to discern the two theoretical results. Furthermore, the influence of Breit interaction on the EII cross sections of open L-shell tungsten ions was studied, and the effect is small but non-negligible. The measured EII cross sections of open L-shell tungsten ions would contribute to fusion plasma studies.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Fundamental Research Funds for the Central Universities in China

Publisher

AIP Publishing

Subject

Condensed Matter Physics

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