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莫尔条纹石墨烯纳米带:近乎完美的吸收和宽角度高效反射。

Moiré graphene nanoribbons: nearly perfect absorptions and highly efficient reflections with wide angles.

作者信息

Zhang H Z, Qin H Y, Zhang W X, Huang L, Zhang X D

出版信息

Opt Express. 2022 Jan 17;30(2):2219-2229. doi: 10.1364/OE.445348.

Abstract

The strong absorption and reflection from atomically thin graphene nanoribbons has been demonstrated over the past decade. However, due to the significant band dispersion of graphene nanoribbons, the angle of incident wave has remained limited to a very narrow range. Obtaining strong absorption and reflection with a wide range of incident angles from atomically thin graphene layers has remained an unsolvable problem. Here, we construct a tunable moiré superlattice composed of a pair of graphene nanoribbon arrays to achieve this goal. By designing the interlayer coupling between two graphene nanoribbon arrays with mismatched periods, the moiré flat bands and the localization of their eigen-fields was realized. Based on the moiré flat bands of graphene nanoribbons, highly efficient reflection and nearly perfect absorption was achieved with a wide range of incident angles. Even more interesting, is how these novel phenomena can be tuned through the adjustment of the graphene's Fermi energy, either electrostatically or chemically. Our designed moiré graphene nanoribbons suggest a promising platform to engineer moiré physics with tunable behaviors, and may have potential applications in the field of wide-angle absorbers and reflectors in the mid-infrared region.

摘要

在过去十年中,原子级薄的石墨烯纳米带已展现出强烈的吸收和反射特性。然而,由于石墨烯纳米带显著的能带色散,入射波的角度一直被限制在非常窄的范围内。从原子级薄的石墨烯层获得宽入射角范围的强吸收和反射仍然是一个无法解决的问题。在此,我们构建了由一对石墨烯纳米带阵列组成的可调谐莫尔超晶格以实现这一目标。通过设计具有不匹配周期的两个石墨烯纳米带阵列之间的层间耦合,实现了莫尔平带及其本征场的局域化。基于石墨烯纳米带的莫尔平带,在宽入射角范围内实现了高效反射和近乎完美的吸收。更有趣的是,这些新现象如何通过静电或化学方式调节石墨烯的费米能来调控。我们设计的莫尔石墨烯纳米带为构建具有可调行为的莫尔物理提供了一个有前景的平台,并且可能在中红外区域的广角吸收器和反射器领域有潜在应用。

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