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Structure of the In-rich InAs (001) surface

机译:富InAs(001)表面的结构

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Using scanning tunneling microscopy, frequency-modulated scanning atomic-force microscopy, electron diffraction, and density functional theory calculations we investigate a structure of the InAs (001) surface displaying c(8x2)/(4x2) reconstruction at room temperature. It is found that the room temperature data are satisfactorily interpreted based on the model proposed by Kumpf et al. [Phys. Rev. Lett. 86, 3586 (2001)], however, at cryogenic temperatures the model fails since a different structure, characterized by fourfold period along [110] crystallographic direction, partial disorder and instability, is observed. By the present study we find that the structure is described by corrected Kumpf et al. model where most of atomic rows are left as in the original model and only the dominant indium atom rows running along [110] are changed. At room temperature the dominant rows are disordered and rapidly fluctuate thermally while at cryogenic temperatures they convert to chains of indium aggregates and acquire fourfold period. Moreover, frequently observed incomplete occupancy of the dominant indium rows leads to many different local surface structures, reflected by characteristic "features" in scanning tunneling microscopy patterns. We have classified and explained most of these structures.
机译:使用扫描隧道显微镜,频率调制扫描原子力显微镜,电子衍射和密度泛函理论计算,我们研究了在室温下显示c(8x2)/(4x2)重构的InAs(001)表面的结构。可以发现,根据Kumpf等人提出的模型,可以令人满意地解释室温数据。 [物理牧师86,3586(2001)],但是,在低温条件下,该模型失败了,因为观察到了不同的结构,其特征是沿[110]晶体学方向具有四倍周期,部分无序和不稳定性。通过本研究,我们发现校正后的Kumpf等人描述了该结构。在模型中,保留了大多数原子行,就像在原始模型中一样,只改变了沿[110]排列的主要铟原子行。在室温下,主要的行是无序的并且在热中快速波动,而在低温下,它们转换成铟聚集体的链并获得四倍的周期。而且,经常观察到的主要铟行的不完全占有导致许多不同的局部表面结构,这由扫描隧道显微镜图案中的特征“特征”反映出来。我们已经对大多数这些结构进行了分类和解释。

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