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Spectrum Simulation of Li-Like Aluminium Plasma
作者姓名:彭枫  蒋刚  朱正和
作者单位:[1]Department of Physics and Electronic Technology, Luoyang Normal College, Luoyang 471022 [2]Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065
基金项目:Supported by the National Defence Foundation of China under Grant No 51480020204SC0102.
摘    要:X-ray emission spectra for L-shell of Li-like aluminium ions are simulated by using the flexible atomic code based on the collisional radiative model. Atomic processes including radiative recombination, dielectronic recombination, collisional ionization and resonance excitation from the neighbouring ion (Al^9+ and Al^11+ ) charge states of the target ion (Al^10+) are considered in the model. In addition, the contributions of different atomic processes to the x-ray spectrum are analysed. The results show that dielectronic recombination, radiative recombination, collisional ionization and resonance excitation, other than direct collisional excitation, are very important processes.

关 键 词:类锂铝等离子体  X-射线发射谱  模拟  碰撞辐射模型
收稿时间:2006-07-17
修稿时间:2006-07-17

Spectrum Simulation of Li-Like Aluminium Plasma
PENG Feng,JIANG Gang,ZHU Zheng-He.Spectrum Simulation of Li-Like Aluminium Plasma[J].Chinese Physics Letters,2006,23(12):3245-3248.
Authors:PENG Feng  JIANG Gang  ZHU Zheng-He
Affiliation:1.Department of Physics and Electronic Technology, Luoyang Normal College, Luoyang 471022 ;2.Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065
Abstract:X-ray emission spectra for L-shell of Li-like aluminium ions are simulated by using the flexible atomic code based on the collisional radiative model. Atomic processes including radiative recombination, dielectronic recombination, collisional ionization and resonance excitation from the neighbouring ion (Al9+ and Al11+) charge states of the target ion (Al10+) are considered in the model. In addition, the contributions of different atomic processes to the x-ray spectrum are analysed. The results show that dielectronic recombination, radiative recombination, collisional ionization and resonance excitation, other than direct collisional excitation, are very important processes.
Keywords:32  30  Rj  52  25  Tx
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