首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Interferences in the 3p(4)nl satellite emission following the excitation of argon across the 2p(1/2)(5)4s and 2p(3/2)(5)3d J=1 resonances
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Interferences in the 3p(4)nl satellite emission following the excitation of argon across the 2p(1/2)(5)4s and 2p(3/2)(5)3d J=1 resonances

机译:穿过2p(1/2)(5)4s和2p(3/2)(5)3d J = 1共振的氩激发后3p(4)nl卫星发射中的干扰

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The intensity and angular distribution of the argon 3p(4)nl photoelectron lines have been measured with a high resolution (of about 55 meV) in the 246.51-246.93 eV photon energy region. For these photon energies, the excitation of the 2p(1/2)(5)4s and 2p(3/2)(5)(3d+5s) J=1 intermediate resonances leads to a remarkable (interference) pattern in the intensity of the observed fine-structure states of the satellite lines, which can be attributed to a coherent interplay between the direct photoionization and various excitation-autoionization channels. Detailed computations show that this behavior in the observed electron intensities can be understood only if both the overlap of the resonances as well as their relative phases are taken into account. For these photon energies, therefore, any accurate description of the photoionization (with excitation) requires going beyond the two-step model, which separates the excitation process of the atoms from the subsequent photoelectron emission. Reasonable agreement between experiment and theory is found for most lines by applying multiconfiguration Dirac-Fock wave functions. Apart from a first quantitative analysis of the 3p(4)nl electron lines, however, the high photon and electron energy resolution of the present experiments may stimulate future investigations on resonance phenomena in atomic photoionization, including rearrangement effects in the bound-state electron density and a refined treatment of the electron continuum.
机译:氩气3p(4)nl光电子谱线的强度和角度分布已在246.51-246.93 eV光子能量区域中以高分辨率(约55 meV)进行了测量。对于这些光子能量,2p(1/2)(5)4s和2p(3/2)(5)(3d + 5s)J = 1中间共振的激发导致强度的显着(干扰)模式观察到的卫星线路的精细结构状态,可以归因于直接光电离和各种激发自电离通道之间的相干相互作用。详细的计算表明,只有同时考虑到共振的重叠及其相对相位,才能理解所观察到的电子强度中的这种行为。因此,对于这些光子能量,任何对光电离(带有激发)的准确描述都需要超越两步模型,该模型将原子的激发过程与随后的光电子发射分开。通过应用多配置Dirac-Fock波函数,可以找到大多数线路的实验与理论之间的合理共识。但是,除了对3p(4)nl电子谱线进行首次定量分析外,本实验的高光子和电子能量分辨率可能会激发对原子光电离中共振现象的未来研究,包括对束缚态电子​​密度的重排效应和电子连续体的精细处理。

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