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与石墨烯集成的非手性金属超表面中的可调强圆二色性

Tunable strong circular dichroism in a non-chiral metallic metasurface integrated with graphene.

作者信息

Ardakani Abbas Ghasempour, Moradi Khatereh

出版信息

Appl Opt. 2019 Aug 10;58(23):6217-6221. doi: 10.1364/AO.58.006217.

Abstract

In this paper, we propose a non-chiral metasurface using an array of V-shaped silver nanostructures surrounded by two graphene sheets to obtain a tunable strong circular dichroism. The position of peaks and dips in the dichroism spectrum depends on the Fermi energy of graphene and can be tuned by changing Fermi energy. For Fermi energies larger than a specific value, stronger tunable circular dichroism is observed. Due to the occurrence of circular dichroism in the near-infrared region, the strong dichroism results from the excitation of surface plasmon in the V-shaped silver nanostructures, not surface plasmon polaritons in the graphene sheets. In addition, the observed tunability is attributed to the dependence of plasmon resonance frequency of silver nanostructures on the surrounding graphene sheets.

摘要

在本文中,我们提出了一种非手性超表面,它由被两个石墨烯片包围的V形银纳米结构阵列组成,以获得可调谐的强圆二色性。二色性光谱中峰和谷的位置取决于石墨烯的费米能量,并且可以通过改变费米能量来进行调谐。对于大于特定值的费米能量,观察到更强的可调谐圆二色性。由于在近红外区域出现圆二色性,这种强二色性是由V形银纳米结构中的表面等离子体激元激发引起的,而不是石墨烯片中的表面等离子体激元极化激元。此外,观察到的可调谐性归因于银纳米结构的等离子体共振频率对周围石墨烯片的依赖性。

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