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The structure of the α-quartz (0001) surface investigated using helium atom scattering and atomic force microscopy

机译:利用氦原子散射和原子力显微镜研究α-石英(0001)表面的结构

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In this paper, we present the first structural investigation of quartz using helium atom scattering (HAS). Studies were carried out on the a-quartz (0001) surface (Z-cut). He-diffraction experiments reveal a complex hexagonal diffraction pattern. Prominent peaks are visible at positions corresponding to the periodicity of the bulk unit cell (4.90 ± 0.02 A). In addition, weak (2×2) peaks and satellite peaks are observed. Two recent theoretical papers both propose a (1×1) reconstruction for α-quartz (0001) with 120° symmetry for the surface unit cell: the so called dense structure. We propose a model where terraces with step heights of a multiple 1/3 of the unit cell height lead to domains rotated by ±60° relative to each other. This is supported by AFM images. The satellite peaks indicate an incommensurate super-lattice structure with a periodicity of the order of 57 A, presumably related to strain relief mechanisms. The (2×2) peaks may stem from co-existing regions of a semi-dense structure, which is predicted to have a higher energy than the dense, (1×1) phase.
机译:在本文中,我们介绍了使用氦原子散射(HAS)对石英进行的首次结构研究。研究是在a石英(0001)表面(Z形切割)上进行的。 He衍射实验揭示了一个复杂的六边形衍射图。在与块状晶胞的周期性相对应的位置(4.90±0.02 A)上可以看到突出的峰。另外,观察到弱的(2×2)峰和卫星峰。最近的两篇理论论文都提出了以120°对称性对α石英(0001)进行(1×1)重构的表面晶胞:所谓的致密结构。我们提出了一个模型,其中阶跃高度为单位像元高度的1/3的阶地导致域相对于彼此旋转了±60°。 AFM图像支持此功能。卫星峰值表明周期为57 A的不相称的超晶格结构,大概与应变消除机制有关。 (2×2)个峰可能源自半密集结构的共存区域,该区域预计比致密的(1×1)相具有更高的能量。

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