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Investigation of intrinsic plasmon energy losses associated with the Fe 1s core level in metallic iron

机译:金属铁中与Fe 1s核能级相关的固有等离子体激元能量损失的研究

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A recently developed CuKα_1 (hv = 8047.8 eV) X-ray source/ESCA300 electron spectrometer combination has been used to investigate the intrinsic plasmon energy losses associated with the Fe 1s core level (binding energy = 7111 eV) in metallic iron. The surface and bulk intrinsic plasmon energy losses were separated and it was found that using the theoretically calculated extrinsic energy loss cross-section to represent the bulk intrinsic energy loss cross-section gave an overall intrinsic loss probability which is approximately the same as if a Lorentzian type cross-section is used. However, this approach does not separate the surface and bulk intrinsic losses properly and is not a good approximation for peak shape analysis in the near peak region. A more realistic approximation is provided by using a Lorentzian type energy loss cross-section to represent the bulk intrinsic energy losses. It has also been shown that for the Fe 1s core level of metallic iron the probability that a photoelectron will suffer an intrinsic energy loss is higher at the surface than in the bulk. Also for this core level the excitation probability for the intrinsic plasmons is greater than that of the extrinsic plasmons. Hence ignoring the intrinsic plasmons would cause considerable error in peak shape analysis in the near peak region.
机译:最近开发的CuKα_1(hv = 8047.8 eV)X射线源/ ESCA300电子光谱仪组合已用于研究与金属铁中Fe 1s核心能级相关的固有等离子体激元能量损失(结合能= 7111 eV)。分离了表面和本体本征等离子体能量损失,发现使用理论计算的外在能量损失横截面来表示本体本征能量损失横截面,可以得到总体内在损失概率,该概率与洛伦兹近似使用类型横截面。但是,这种方法不能将表面损耗和体积固有损耗适当地分开,并且对于近峰区域中的峰形分析也不是很好的近似方法。通过使用洛伦兹型能量损失横截面来表示整体固有能量损失,可以提供更逼真的近似值。还已经表明,对于金属铁的Fe 1s芯能级,光电子在表面上遭受固有能量损失的可能性要比在主体中更高。同样对于该核心水平,本征等离子体激元的激发概率大于非本征等离子体激元的激发概率。因此,忽略固有等离子体激元将在近峰区域的峰形分析中引起相当大的误差。

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