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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Theoretical study on decay processes of the core-excited states in BII
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Theoretical study on decay processes of the core-excited states in BII

机译:BII中核心激发态衰变过程的理论研究

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摘要

Wavefunctions, energies, radiative decay possibilities and non-radiative (Auger) decay rates of the core-excited 1s(2l) ~n(2l') ~m(n+m=3) states in BII are calculated using relativistic Multiconfiguration Dirac-Fock method. We found that electron correlations effects are very important for energies and radiative decay rates of core-excited states in BII and that both the valence-valence and core-valence electron correlations need to be considered in the calculations. Auger decay rates of quintuplet 1s2p ~3 ~5S _2 states and 1s2s2p ~2 ~5P _1, ~5P _2, ~5P _3 states are much smaller compared to these of other states, which implies that these states are more stable than the other states in this work. Our results provide theoretical supports to further experimental researches.
机译:使用相对论多配置Dirac-公式计算了BII中核心激发的1s(2l)〜n(2l')〜m(n + m = 3)状态的波函数,能量,辐射衰减可能性和非辐射(Auger)衰减率。 Fock方法。我们发现,电子相关效应对于BII中核激发态的能量和辐射衰减率非常重要,并且在计算中必须同时考虑价电子价和核价电子相关性。五联体1s2p〜3〜5S _2状态和1s2s2p〜2〜5P _1,〜5P _2,〜5P _3状态的俄歇衰变率要比其他状态小得多,这意味着这些状态比其他状态更稳定在这项工作中。我们的结果为进一步的实验研究提供了理论支持。

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