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Shifting atomic patterns: On the origin of the different atomic-scale patterns of graphite as observed using scanning tunnelling microscopy

机译:转移原子图案:使用扫描隧道显微镜观察到的石墨不同原子尺度图案的起源

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We present an in-depth study of the myriad atomically resolved patterns observed on graphite using the scanning tunnelling microscope (STM) over the past three decades. Through the use of highly resolved atomic resolution images, we demonstrate how the interactions between the different graphene layers comprising graphite affect the local surface atomic charge density and its resulting symmetry orientation, with particular emphasis on interactions that are thermodynamically unstable. Moreover, the interlayer graphene coupling is controlled experimentally by varying the tipsurface interaction, leading to associated changes in the atomic patterns. The images are corroborated by first-principles calculations, further validating our claim that surface graphene displacement, coming both from lateral and vertical displacement of the top graphene layer, forms the basis of the rich variety of atomic patterns observed in STM experiments on graphite.
机译:我们将对过去三十年来使用扫描隧道显微镜(STM)在石墨上观察到的无数原子分解图案进行深入研究。通过使用高分辨率的原子分辨率图像,我们演示了包含石墨的不同石墨烯层之间的相互作用如何影响局部表面原子电荷密度及其产生的对称取向,尤其着重于热力学不稳定的相互作用。此外,通过改变尖端表面的相互作用来实验控制层间石墨烯的偶联,从而导致原子图案的相关变化。这些图像通过第一性原理计算得到了证实,进一步证实了我们的说法,即表面石墨烯的位移来自顶层石墨烯层的横向和垂直位移,构成了在STM实验中对石墨进行观察的丰富多样的原子图案的基础。

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