Surface plasmon resonance based on graphene-metal-graphene structure: recurrence relation theory

IF 1.2 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
G. González de la Cruz
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引用次数: 0

Abstract

The last years, graphene has opened exciting new fields in graphene plasmonics, due to the graphene’s unique optoelectronic properties such as long-lived collective excitation, extreme optical confinement in graphene plasmonics and extraordinary light-matter interactions in metamaterials. Therefore, these excellent properties make graphene a favorable candidate for novel plasmonic devices and potential applications in photonics, optoelectronics and sensor technologies. In this work, theoretical investigations are carried out to in Graphene-Metal-Graphene structure for enhanced surface plasmon resonance based on the recurrence relations’ method. We find that the graphene-metal-graphene structure supports both high-energy optical plasmon oscillations and out-of-phase low energy acoustic charge density excitations. Since a high performance of surface plasmon resonance excitations should exhibit a large depth of dip (small reflectivity), the minimum of reflectivity in the hybrid structure can be manipulated dynamically by changing the thickness of the metallic film, the number of the graphene layers and the dielectric proprieties of the surrounding dielectric materials. Based on this principle, different kinds of plasmonic sensors have been designed in previous years.
基于石墨烯-金属-石墨烯结构的表面等离子体共振:递推关系理论
在过去的几年里,石墨烯在石墨烯等离子体中开辟了令人兴奋的新领域,由于石墨烯独特的光电特性,如长寿命的集体激发,石墨烯等离子体中的极端光学约束和超材料中非凡的光-物质相互作用。因此,这些优异的性能使石墨烯成为新型等离子体器件的有利候选者,并在光子学、光电子学和传感器技术中具有潜在的应用前景。本文基于递推关系的方法,对石墨烯-金属-石墨烯结构增强表面等离子体共振进行了理论研究。我们发现石墨烯-金属-石墨烯结构既支持高能光学等离子激元振荡,也支持异相低能量声波电荷密度激发。由于表面等离子体共振激发的高性能应该表现出较大的倾斜深度(小反射率),因此混合结构中的最小反射率可以通过改变金属膜的厚度、石墨烯层数和周围介电材料的介电特性来动态控制。基于这一原理,近年来人们设计了不同类型的等离子体传感器。
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来源期刊
Revista Mexicana De Fisica
Revista Mexicana De Fisica 物理-物理:综合
CiteScore
2.20
自引率
11.80%
发文量
87
审稿时长
4-8 weeks
期刊介绍: Durante los últimos años, los responsables de la Revista Mexicana de Física, la Revista Mexicana de Física E y la Revista Mexicana de Física S, hemos realizado esfuerzos para fortalecer la presencia de estas publicaciones en nuestra página Web ( http://rmf.smf.mx).
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