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首页> 外文期刊>The Astrophysical journal >TRANSITION ENERGIES, OSCILLATOR STRENGTHS, AND TRANSITION PROBABILITIES OF HIGH-LYING ~1P~o AND ~1D~e STATES OF NEON-LIKE IONS
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TRANSITION ENERGIES, OSCILLATOR STRENGTHS, AND TRANSITION PROBABILITIES OF HIGH-LYING ~1P~o AND ~1D~e STATES OF NEON-LIKE IONS

机译:霓虹离子〜1P〜o和〜1D〜e高态的跃迁能,振动子强度和跃迁几率

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摘要

Transition energies, oscillator strengths, and transition probabilities for the high-lying dipolar and quadrupolar excitations up to principal quantum number n = 4 have been calculated for the first few members of the Ne isoelectronic sequence using the time-dependent coupled Hartree-Fock (TDCHF) theory. These data are very useful for the spectral diagnostics of solar, stellar, and laboratory plasma. Most of the data for high-lying transitions are new. For low-lying transitions, results agree well with the existing theoretical and experimental data.
机译:对于Ne等电子序列的前几个成员,使用时变耦合Hartree-Fock(TDCHF)计算了最高主量子数n = 4的高强度偶极和四极激发的跃迁能,振荡器强度和跃迁概率)理论。这些数据对于太阳,恒星和实验室等离子体的光谱诊断非常有用。高难度转换的大多数数据都是新的。对于低洼的过渡,结果与现有的理论和实验数据非常吻合。

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