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Robust visibility of graphene monolayer on patterned plasmonic substrates

机译:石墨烯单层在图案化等离子体基材上的鲁棒性可见性

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Single and few-layer graphene flakes, while visible on a dielectric surface with customized thickness, cannot be optically imaged when exfoliated directly on semiconductors or metal substrates with arbitrary thickness. In this paper, we show that such graphene flakes become visible through a conventional microscope on a substrate patterned with a submicron sized, hexagonally packed array of gold disks. The interaction of the metal pattern with the incident light generates surface plasmon polaritons (SPPs) and results in enhanced reflectivity for certain angles and wavelengths. In the areas where graphene flakes are present, the interaction of the SPP with incident radiation is altered and consequently decreases the reflectivity in this region and increases the contrast, which accounts for the visibility of the graphene flakes on such substrates. We validate the observed contrast in visibility utilizing an in-house developed modified form of rigorous coupled wave analysis algorithm to appropriately incorporate the optical properties of two-dimensional materials. We present a parametric study of the contrast of graphene flakes on the patterned substrate to demonstrate the robustness of the visibility.
机译:单层和几层石墨烯片在具有定制厚度的介电表面上可见,不能在直接剥离具有任意厚度的半导体或金属基板上时光学成像。在本文中,我们表明,这种石墨烯片通过用亚微米尺寸的六边形填充阵列图案化的衬底上的常规显微镜可见。金属图案与入射光的相互作用产生表面等离子体(SPP),并导致某些角度和波长的增强的反射率。在存在石墨烯片的区域中,SPP与入射辐射的相互作用被改变,从而降低了该区域中的反射率并增加了对比度,该对比度占石墨烯薄片在这种基材上的可见性。我们在利用内部开发的严格耦合波分析算法中验证了观察到的对比度,以适当地结合二维材料的光学性质。我们介绍了图案化衬底上石墨烯薄片对比度的参数研究,以证明可见性的鲁棒性。

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