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Tuneable complementary metamaterial structures based on graphene for single and multiple transparency windows

机译:基于石墨烯的可调谐互补超材料结构用于单个和多个透明窗口

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摘要

Novel graphene-based tunable plasmonic metamaterials featuring single and multiple transparency windows are numerically studied in this paper. The designed structures consist of a graphene layer perforated with quadrupole slot structures and dolmen-like slot structures printed on a substrate. Specifically, the graphene-based quadrupole slot structure can realize a single transparency window, which is achieved without breaking the structure symmetry. Further investigations have shown that the single transparency window in the proposed quadrupole slot structure is more likely originated from the quantum effect of Autler-Townes splitting. Then, by introducing a dipole slot to the quadrupole slot structure to form the dolmen-like slot structure, an additional transmission dip could occur in the transmission spectrum, thus, a multiple-transparency-window system can be achieved (for the first time for graphene-based devices). More importantly, the transparency windows for both the quadrupole slot and the dolmen-like slot structures can be dynamically controlled over a broad frequency range by varying the Fermi energy levels of the graphene layer (through electrostatic gating). The proposed slot metamaterial structures with tunable single and multiple transparency windows could find potential applications in many areas such as multiple-wavelength slow-light devices, active plasmonic switching, and optical sensing.
机译:本文对具有单一和多个透明窗口的基于石墨烯的可调谐等离子超材料进行了数值研究。设计的结构由穿孔有四极缝结构的石墨烯层和印刷在基板上的类似dolmen的缝结构组成。具体地,基于石墨烯的四极缝隙结构可以实现单个透明窗,这在不破坏结构对称性的情况下实现。进一步的研究表明,所提出的四极缝隙结构中的单个透明窗口更可能源自Autler-Townes分裂的量子效应。然后,通过将偶极缝隙引入四极缝隙结构以形成类似dolmen的缝隙结构,可能会在透射光谱中发生额外的透射下降,因此可以实现多透明窗口系统(这是首次基于石墨烯的设备)。更重要的是,通过改变石墨烯层的费米能级(通过静电门控),可以在很宽的频率范围内动态控制四极缝隙和类似dolmen缝隙结构的透明窗。所提出的具有可调的单个和多个透明窗口的狭缝超材料结构可以在许多领域找到潜在的应用,例如多波长慢光设备,有源等离激元开关和光学传感。

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