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Theoretical study of the X-ray K beta emission spectrum of an argon atom

机译:氩原子的X射线Kβ发射光谱的理论研究

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The influence of many-particle effects on absolute values and the shape of the doubly differential cross section of resonant inelastic scattering of a linearly polarized X-ray photon by a free Ar atom close to the K- and KM (23)-ionization thresholds is studied theoretically. The evolution of the spatially extended profile of the scattering cross section to the principal K beta(1,3) and satellite K beta(5) structures of the Ar X-ray K beta emission spectrum is demonstrated. The calculations are performed in the nonrelativistic Hartree-Fock approximation for the wave functions of one-electron states and in the dipole approximation for the anomalous-dispersion amplitude of the scattering probability. The effects of the radial relaxation of electron shells, the correlation loosening, vacuum correlations, the spin-orbit and multiplet splitting, as well as the Auger and radiative decays of the vacancies produced are taken into account. The calculation results have a predictive character and, for the case of the incident photon energies of 3199.2 and 3245.9 eV, they are in good agreement with the results of the synchrotron experiment on measuring the X-ray K beta emission spectrum of a free Ar atom.
机译:多粒子效应对接近于K和KM(23)电离阈值的自由Ar原子对线性极化X射线光子共振非弹性散射的绝对值和双微分截面形状的影响为从理论上研究。证明了散射截面的空间扩展轮廓向Ar X射线K beta发射光谱的主要K beta(1,3)和卫星K beta(5)结构的演变。对于单电子态的波函数,以非相对论性Hartree-Fock近似进行计算;对于散射概率的反常色散幅度,以偶极近似进行计算。考虑了电子壳径向弛豫,相关性松动,真空相关性,自旋轨道和多重分裂的影响,以及产生的空位的俄歇和辐射衰减的影响。计算结果具有预测性,对于3199.2和3245.9 eV的入射光子能量,它们与同步加速器实验测量自由Ar原子的X射线K beta发射光谱的结果非常吻合。

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