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Investigation of the pre-edge inelastic X-ray scattering by several 3d transition-metal compounds

机译:几种3d过渡金属化合物对边缘非弹性X射线散射的研究

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Spectra of X-rays scattered by compounds of 3d transition elements exhibit structure when the energies of the incident X-rays are a few electronvolts below the elements' K-absorption edge energies. This structure is the result of an inelastic scattering process and has been studied in compounds of chromium, iron and copper with a high-energy resolution wavelength-dispersive spectrometer. When the energies of the incident X-rays were tuned between the pre edge peak and the absorption edge, the energy of the resonantly scattered Xrays were always measured to be equal to the energy of the characteristic K alpha X-rays. This observation is in disagreement with the prediction of the present theoretical models for resonant scattering which were derived assuming the interactions to be fast collisions.
机译:当入射的X射线的能量比元素的K吸收边缘能低几个电子伏时,由3d过渡元素的化合物散射的X射线的光谱就显示出结构。这种结构是非弹性散射过程的结果,并已通过高能分辨率波长色散光谱仪研究了铬,铁和铜的化合物。当将入射X射线的能量调整到前边缘峰和吸收边缘之间时,共振散射X射线的能量始终被测量为等于特征K alpha X射线的能量。该观察结果与当前的共振散射理论模型的预测不一致,该理论模型是假设相互作用为快速碰撞而得出的。

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