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Dynamics of Electron Excitation of Low-Energy Quartet States of the Potassium Atom

机译:钾原子低能四方态电子激发的动力学

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The electron excitation function for the lowest (3p~(5)3d4s)~(4)P autoionizing quartet level of the potassium atom is measured in the energy range from the threshold of the process to 102 eV at the energy resolution of 0.3 eV or better. The near-threshold energy region is studied in detail for the first time. The main processes that govern the dynamics of excitation of the low-lying quartet levels in the potassium atom are analyzed by comparing these data with the excitation functions obtained earlier for the (3p~(5)4s4p)~(4)S and (3p~(5)4s4p)~(4)D levels. In particular, the resonances of negative ions in the near-threshold energy region are shown to play a dominant role, as well as to significantly affect the efficiency of the cascade transitions from higher-lying quartet levels.
机译:最低(3p〜(5)3d4s)〜(4)P钾原子自电离四重态的电子激发函数是在过程阈值至102 eV的能量范围内,以0.3 eV的能量分辨率或更好。首次详细研究了接近阈值的能量区域。通过将这些数据与较早获得的(3p〜(5)4s4p)〜(4)S和(3p)的激发函数进行比较,分析了控制钾原子中低四重态激发水平动力学的主要过程。 〜(5)4s4p)〜(4)D水平。特别是,负离子在接近阈值的能量区域中的共振显示出起主导作用,并且显着影响了来自更高四重奏水平的级联跃迁的效率。

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