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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >High-resolution core-level photoemission study of Eu-induced (3X2)/(3X4) reconstruction on Ge(111)
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High-resolution core-level photoemission study of Eu-induced (3X2)/(3X4) reconstruction on Ge(111)

机译:Eu诱导的Ge(111)上(3X2)/(3X4)重建的高分辨率核心层光发射研究

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摘要

We have investigated Eu-induced Ge(111)-(3 X 2)/(3 X4) reconstruction by high-resolution core-level pho-toelectron spectroscopy using synchrotron radiation and low-energy electron diffraction. Recent scanning tunneling microscopy (STM) observations [Phys. Rev. B 73, 125332 (2006)] revealed that the Ge arrangement of this reconstruction can be well described in terms of the honeycomb chain-channel (HCC) geometry proposed earlier for metal/Si(111)-(3 X 1) and -(3 X 2) surfaces; the Eu atoms, however, were found to reside at two different adsorption sites in the Eu/Ge(111)-(3 X 2)/(3 X 4) reconstruction, in contrast to the equivalent adsorption sites (e.g., TA) occupied in the case of Si. The present photoemission results provide further information about the atomic arrangement of Eu/Ge(111)-(3 X 2)/(3 X 4). In particular, we show that the Ge 3d core-level data cannot be interpreted by the HCC structure with the Eu atoms adsorbed only on TA sites, giving a spectroscopic support for the suggestions based on the earlier STM data. We consider here a modified HCC-based configuration for the Eu/Ge(111)-(3 X 2)/(3 X 4) surface where the Eu atoms occupy two different sites in the empty channel between the neighboring Ge honeycomb chains. The atomic models are discussed in the context of the Ge 3d and Eu 4f data as well as the previous results available in the literature. Finally, we propose a structural model that allows us to account for the present photoemission and earlier STM findings.
机译:我们已经研究了Eu-诱导的Ge(111)-(3 X 2)/(3 X4)重建,该重建是通过使用同步辐射和低能电子衍射的高分辨率核能级光电子能谱实现的。最近的扫描隧道显微镜(STM)观察[Phys。 Rev. B 73,125332(2006)]揭示了这种重构的Ge排列可以用较早提出的针对金属/ Si(111)-(3 X 1)的蜂窝链通道(HCC)几何形状来描述。 -(3 X 2)个表面;然而,与占据的等效吸附位点(例如TA)相反,发现Eu原子驻留在Eu / Ge(111)-(3 X 2)/(3 X 4)重构中的两个不同吸附位点上在硅的情况下。目前的光发射结果提供了有关Eu / Ge(111)-(3 X 2)/(3 X 4)原子排列的更多信息。特别是,我们表明Ge 3d核心能级数据不能被HCC结构解释,因为Eu原子仅吸附在TA位点上,从而为基于早期STM数据的建议提供了光谱学支持。我们在这里考虑Eu / Ge(111)-(3 X 2)/(3 X 4)表面的基于HCC的改进配置,其中Eu原子在相邻的Ge蜂窝链之间的空通道中占据两个不同的位置。在Ge 3d和Eu 4f数据以及文献中现有的结果的背景下讨论了原子模型。最后,我们提出了一个结构模型,该模型可以解释当前的光发射和早期的STM发现。

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