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Comparative Experimental Study of X-Ray Absorption Spectroscopy and Electron Energy Loss Spectroscopy on Passivated U Surfaces

机译:X射线吸收光谱和电子能量损失光谱对钝化U表面的比较实验研究

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X-ray absorption spectroscopy and electron energy loss spectroscopy are complementary analytical techniques on energy and spatial resolution. These techniques are based on the same fundamental physical process of core excitation with either an incident photon or incident electron. In the proper experimental configuration the electron and photon inelastic scattering amplitudes are comparable and thus the x-ray and electron absorption edges look identical. We have applied these two complementary analytical techniques to investigate the electronic structure of C ion implanted U. Implantation of C~+ ions into U~238 has been shown to produce a physically and chemically modified surface layer that passivates the surface preventing further air oxidation and corrosion. Comparison of the resultant spectra reveal that transitions between the initial state and a series of final states yield numerous strong features at the absorption edge that can provide structural information and information on the local chemical environment, including the character of the U 5f state.
机译:X射线吸收光谱和电子能损光谱是能量和空间分辨率的互补分析技术。这些技术基于与入射光子或入射电子的核心激发相同的基本物理过程。在适当的实验配置中,电子和光子无弹性散射幅度是可比的,因此X射线和电子吸收边缘看起来相同。我们已经应用了这两种互补分析技术来研究C离子的电子结构植入U.已经证明了将C〜+离子的植入植入为U〜238,以产生物理和化学改性的表面层,其钝化表面防止进一步的空气氧化和进一步的空气氧化和腐蚀。结果光谱的比较揭示了初始状态和一系列最终状态之间的转换,在吸收边缘处产生多种强大的特征,可以提供关于当地化学环境的结构信息和信息,包括U 5F状态的特征。

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