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Configuration of ripple domains and their topological defects formed under local mechanical stress on hexagonal monolayer graphene

机译:六边形单层石墨烯在局部机械应力作用下形成的波纹域构型及其拓扑缺陷

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Ripples in graphene are extensively investigated because they ensure the mechanical stability of two-dimensional graphene and affect its electronic properties. They arise from spontaneous symmetry breaking and are usually manifested in the form of domains with long-range order. It is expected that topological defects accompany a material exhibiting long-range order, whose functionality depends on characteristics of domains and topological defects. However, there remains a lack of understanding regarding ripple domains and their topological defects formed on monolayer graphene. Here we explore configuration of ripple domains and their topological defects in exfoliated monolayer graphenes on SiO2/Si substrates using transverse shear microscope. We observe three-color domains with three different ripple directions, which meet at a core. Furthermore, the closed domain is surrounded by an even number of cores connected together by domain boundaries, similar to topological vortex and anti-vortex pairs. In addition, we have found that axisymmetric three-color domains can be induced around nanoparticles underneath the graphene. This fascinating configuration of ripple domains may result from the intrinsic hexagonal symmetry of two-dimensional graphene, which is supported by theoretical simulation using molecular dynamics. Our findings are expected to play a key role in understanding of ripple physics in graphene and other two-dimensional materials.
机译:石墨烯中的波纹可进行广泛的研究,因为它们可确保二维石墨烯的机械稳定性并影响其电子性能。它们是由自发的对称性破坏引起的,通常以具有远距离有序域的形式出现。可以预期,拓扑缺陷会伴随着显示出长程有序的材料,其功能取决于域和拓扑缺陷的特性。然而,对于波纹域及其在单层石墨烯上形成的拓扑缺陷,仍然缺乏了解。在这里,我们使用横向剪切显微镜研究了SiO 2 / Si衬底上的剥落单层石墨烯中波纹域的构型及其拓扑缺陷。我们观察到具有三个不同波纹方向的三色域,它们在一个核心处相遇。此外,与拓扑涡旋和反涡旋对相似,闭合畴被偶数个通过畴边界连接在一起的核所包围。此外,我们发现可以在石墨烯下方的纳米粒子周围诱导轴对称三色域。波纹域的这种引人入胜的配置可能是二维石墨烯的固有六边形对称性所致,这由使用分子动力学的理论模拟所支持。我们的发现有望在理解石墨烯和其他二维材料中的波纹物理方面发挥关键作用。

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