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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effect of dielectric environment on plasmonic resonance absorption of graphene nanoribbon arrays
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Effect of dielectric environment on plasmonic resonance absorption of graphene nanoribbon arrays

机译:介电环境对石墨烯纳米阵列等离子体共振吸收的影响

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摘要

The plasmonic resonance absorption properties of a periodic graphene nanoribbon array are studied in this paper. We discuss the effect of the asymmetricity of the dielectric environment on the plasmonic resonance of the graphene nanoribbon array in order to know which combination of the two dielectric materials surrounding the graphene is most advantageous. The results show that, regardless of the graphene in symmetric and asymmetrical environments, the absorption peak of plasmon resonance shifts to longer wavelengths (shifts red) with the increase of the changing permittivity (permittivities) on one or both sides. This absorption characteristic of the graphene periodic array to external electromagnetic waves originates from the wavelength dependence of the intrinsic graphene plasmons on the environmental medium.
机译:本文研究了周期性石墨烯纳米峰阵列的等离子体共振吸收性能。 我们讨论了介电环境的不对称性对石墨烯纳米卷阵列等离子体共振的影响,以便知道围绕石墨烯周围的两个介电材料的组合是最有利的。 结果表明,无论在对称和不对称环境中的石墨烯如何,等离子体共振的吸收峰随着在一个或两侧的变化(允许)的增加而变化到更长波长(换档)。 将石墨烯周期阵列的这种吸收特性源于外部电磁波来源于本征石墨烯等离子体对环境介质的波长依赖性。

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