Collisional-radiative modeling for the EUV spectrum of W40+ - W42+ ions

Lirong Lei, Xiaobin Ding, Cunqiang Wu, Denghong Zhang, Ling Zhang, Fengling Zhang, Ke Yao, Yang Yang, Yunqing Fu, Chen-Zhong Dong
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Abstract

The wavelengths and transition rates of W40+ - W42+ ions within the range of 40-140 Å, have been calculated using the Flexible Atomic Code of the Dirac-Fock-Slater method with a central potential. We investigated the charge state distribution of W38+- W45+ ions at different temperatures by constructing an appropriate rate equation and demonstrate the importance of the dielectronic recombination process. Additionally, we simulated the emission spectra of W40+ - W42+ ions in a Tokamak plasma environment using collisional-radiative modeling. Our findings demonstrate strong agreement with experimental results and other related theoretical investigations. Finally, we propose certain pairs of transition lines as diagnostic tools for plasma temperature and density, leveraging the correlation between line intensity ratio and electron temperature and density.
W40+ - W42+ 离子超紫外光谱的碰撞辐射模型
我们使用中心势的狄拉克-福克-斯莱特方法的灵活原子代码计算了 W40+ - W42+ 离子在 40-140 Å 范围内的波长和转变速率。通过构建适当的速率方程,我们研究了 W38+- W45+ 离子在不同温度下的电荷状态分布,并证明了介子电子重组过程的重要性。此外,我们还利用碰撞辐射模型模拟了托卡马克等离子体环境中 W40+ - W42+ 离子的发射光谱。我们的研究结果与实验结果和其他相关理论研究结果非常吻合。最后,我们利用线强度比与电子温度和密度之间的相关性,提出将某些过渡线对作为等离子体温度和密度的诊断工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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