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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Dielectronic satellite spectra of heliumlike iron and nickel from the unified recombination method
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Dielectronic satellite spectra of heliumlike iron and nickel from the unified recombination method

机译:统一重组法分析氦样铁和镍的双电子卫星光谱

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It is shown that resonances in the unified recombination cross sections correspond directly to dielectronic satellite spectra. Positions, intensities, and profiles of satellite lines may be obtained accurately using the Breit-Pauli R-matrix method and the unified theory of total electron-ion recombination. The intrinsic dielectronic resonance strength corresponding to autoionizing resonances is defined in analogy with measured quantities, and with resonance oscillator strengths. Satellite intensities then depend extrinsically on dynamical parameters in the plasma and may be obtained at any temperature in a straightforward manner from the resonance strengths. Profiles of dielectronic satellite lines of He-like Fe XXV and Ni XXVII are obtained in an ab initio manner. Detailed calculations also exhibit interference effects in resonance profiles delineated at high resolution. Although interference among resonances is not important for resonance strengths of the highly charged ions Fe XXV and Ni XXVII it might be significant for lower ionization states of heavy elements in general. The resonance identitification scheme for unified recombination cross sections is described, and applied to obtain all known KLL satellites of Fe XXV and Ni XXVII. Dielectronic satellite strengths are compared with earlier works and significant differences and similarities are discussed.
机译:结果表明,在统一重组截面中的共振直接对应于双电子卫星光谱。卫星线的位置,强度和轮廓可以使用Breit-Pauli R-矩阵方法和总电子离子重组的统一理论精确获得。对应于自电离共振的固有双电子共振强度类似于测量量和共振振荡器强度来定义。卫星强度则在外部依赖于等离子体中的动力学参数,并且可以在任何温度下以直接的方式从共振强度获得。从头开始获得类He的Fe XXV和Ni XXVII的双电子卫星谱线。详细的计算还显示了以高分辨率描绘的共振曲线中的干扰效应。尽管共振之间的干扰对于高电荷离子Fe XXV和Ni XXVII的共振强度并不重要,但通常对于重元素的较低电离态可能很重要。描述了统一重组截面的共振识别方案,并将其应用于获得所有已知的Fe XXV和Ni XXVII的KLL卫星。将双电子卫星的优势与早期工作进行了比较,并讨论了重大的异同。

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