首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Ionization balance for Ti and Cr ions: effects of uncertainty in dielectronic recombination rate
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Ionization balance for Ti and Cr ions: effects of uncertainty in dielectronic recombination rate

机译:Ti和Cr离子的电离平衡:双电子复合速率不确定性的影响

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摘要

The available electron-impact ionization cross sections for Ti and Cr ions are reviewed, and calculations of the ionization balance for the ions under coronal equilibrium are presented. The calculated ionic abundance fractions are compared with those of previous works. The effects of modelling uncertainty in dielectronic recombination on isoelectronic line ratios, which are formed using the same spectral line from two elements of slightly different atomic numbers, are discussed concentrating on high temperature ranges. Also discussed are the effects of modelling uncertainty on inter-ionization stage line ratios formed from adjacent ionization stages. It is demonstrated that the modelling uncertainty in dielectronic recombination tends to cancel out only when the isoelectronic line ratio of He-like ions is considered, and that the sensitivity of the isoelectronic line ratios to the modelling uncertainty tends to increase for less ionized stages. It is also found that the interstage line ratios are less sensitive to the typical similar to20% uncertainties of dielectronic rates than the isoelectronic line ratios, and that the interstage line ratio of He- to Li-like ions in Ti and Cr plasmas is a better choice for a temperature diagnostic in the temperature ranges from similar to0.6 to similar to1.5 keV in which Li-like ions have maximum ionic abundances. [References: 40]
机译:综述了Ti和Cr离子可用的电子碰撞电离截面,并提出了在日冕平衡下离子的电离平衡的计算。将计算出的离子丰度分数与以前的工作进行比较。重点讨论了高温范围,讨论了使用相同光谱线由原子序数略有​​不同的两个元素形成的双电子复合中建模不确定性对等电子线比的影响。还讨论了建模不确定性对由相邻电离级形成的电离级间线比的影响。结果表明,仅当考虑类He离子的等电子线比时,双电子复合中的建模不确定性趋于消除,并且对于较少电离级,等电子线比对建模不确定性的敏感性趋于增加。还发现,级间线比对典型的大约20%的双电子速率不确定度比等电线比不敏感,并且在Ti和Cr等离子体中He-与Li离子的级间线比更好。在温度范围从类似于0.6到近似1.5 keV的温度诊断中,Li类离子具有最大的离子丰度。 [参考:40]

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