Spectral line shift of He-like titanium in hot and dense plasmas

Ran Lin-Song, Wang Hongbin, Li Xiangdong, Zhang Ji-yan, Cheng Xin-lu
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引用次数: 0

Abstract

By assuming the ion sphere model, the self-consistent field method for the Poisson-Boltzmann equation and the Dirac equation is used to calculate the energy levels of He-like titanium immersed in hot and dense plasmas. Consequently, the spectral shifts of the intercombination line and the resonance line and the shifts of the exchange energy of He-like titanium in hot and dense plasmas are studied. The results show that the two electronic dipole transitions red shift nearly linearly with the increase of plasma electron density. The formula of the linear relationship is found. The results may be useful in developing the new method of dense plasma diagnosis.
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热致密等离子体中He-like钛的谱线位移
在假设离子球模型的前提下,采用泊松-玻尔兹曼方程和狄拉克方程的自洽场法计算了he -类钛在高温致密等离子体中的能级。因此,研究了He-like钛在高温致密等离子体中的互合谱线和共振谱线的谱移以及交换能的位移。结果表明,随着等离子体电子密度的增加,两个电子偶极跃迁几乎呈线性红移。得到了线性关系的表达式。研究结果对发展致密血浆诊断新方法有一定的参考价值。
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来源期刊
核聚变与等离子体物理
核聚变与等离子体物理 Energy-Nuclear Energy and Engineering
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Active feedback control used in plasma vertical unstable displacement for EAST Spectral line shift of He-like titanium in hot and dense plasmas HL-2A control system and its discharge management
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