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Resonant Inelastic Scattering of an X-Ray Photon by a Linear Molecule

机译:线性分子对X射线光子的共振非弹性散射

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The double differential cross section of resonant inelastic scattering of a linearly polarized X-ray photon by a spatially oriented HF molecule in a gas phase is theoretically described in the energy range of the ionization threshold of the deep molecular orbital 1sigma. The effects of radial relaxation of the wave functions of the core and excited scattering states in fields of the formed core vacancies, the vibronic effects, and the effects of Auger and radiative decays of the vacancies are taken into account in the nonrelativistic Hartree-Fock approximation. The results of the calculations are predictive and agree well with the results of the experimental measurements of the K(alpha) emission spectrum of the HF molecule at an incident photon energy of 2 keV, which considerably exceeds the energy of the 1sigma ionization threshold.
机译:理论上在深分子轨道1sigma的电离阈值的能量范围内描述了气相中空间取向的HF分子对线性偏振X射线光子的共振非弹性散射的双微分截面。在非相对论性的Hartree-Fock近似中考虑了形成的核空位场中核的波函数的径向弛豫和激发散射态的影响,振动效应以及俄歇效应和空位的辐射衰减效应。 。计算结果是可预测的,并且与入射光子能量为2 keV时HF分子的Kα发射光谱的实验测量结果非常吻合,该能量大大超过了1sigma电离阈值的能量。

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