首页|基于三重表面等离子体诱导透明的动态可调太赫兹慢光器件

基于三重表面等离子体诱导透明的动态可调太赫兹慢光器件

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本文提出了一种具有简单结构且能实现优异性能的石墨烯基器件.该器件能实现三重动态可调太赫兹表面等离子体诱导透明效应以及慢光效果.该器件的功能结构单元由双层石墨烯和硅-空气光栅组成;在周期性硅-空气光栅的辅助激励下,下层石墨烯中的电子可以被入射太赫兹波/能量完全激发,可被视为明模式,并且容易被检测.上层石墨烯中的电子对入射太赫兹波/能量反应十分迟钝,甚至没有反应,被视为暗模式.当明暗模式的共振频率相同或接近时,两者就会发生干涉,从而形成等离子体诱导透明现象.此外,该器件中的双层石墨烯均是完整的石墨烯条而非间断结构,通过外部电压可以十分方便地调节石墨烯的载流子,进而改变石墨烯的费米能级,从而在不改变器件结构参数的情况下实现动态调谐的功能.本文还研究了该器件的慢光性能,器件的群延迟和群折射率分别能够达到0.304ps和607.6,有望为慢光、传感、光存储等潜在应用提供理论基础.
Dynamically tunable terahertz slow light device based on triple plasmonic induced transparency
A simple graphene-based device with excellent performance is proposed.This device can realize a terahertz triple dynamically tunable plasmonic induced transparency effect.The optics slow light application is also investigated in detail.The functional structural unit of this device is double graphene layer and silicon-air grating.Under the auxiliary excitation of periodic silicon-air grating,the electrons in the lower graphene layer can be perfectly excited by incident energy,so it can be considered as a bright mode and can be easily detected.The electrons in the upper graphene layer respond very slowly or even have no response to incident energy,so it is considered as a dark mode.When the resonant frequencies of bright and dark modes are the same or close,interference phase effect can occur,thus forming a triple plasmonic induced transparency effect.Furthermore,the double graphene layer in this proposed device is in a continuous state rather than discontinuous state,thus it is very convenient to regulate the carriers of graphene through external voltage,thereby achieving a tuning performance of the device.The Fermi level of graphene can also be adjusted externally under the external voltage.The slow light performance of this proposed device is also researched in this paper.The group delay and group refractive index achieved by this structure can reach up to 0.304 ps and 607.6,respectively.This investigation is expected to provide a potential theoretical basis for slow light,sensing,optical storage,and other aspects.

plasmonicsmetamaterialsslow light deviceintegrated optics device

许辉、李铭、杨肖杰、徐海烨、陈智全

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湖南工商大学微电子与物理学院,长沙 410205

湖南省湘江实验室,长沙 410205

表面等离子体 超材料 慢光器件 集成光学器件

湘江实验室重点项目国家自然科学基金湖南省自然科学基金湖南省自然科学基金长沙市自然科学基金湖南省教育厅科研项目湖南省教育厅科研项目

23XJ02001621731352023JJ402182022JJ30201kq220229821B057421B0556

2024

中国科学(物理学 力学 天文学)
中国科学院

中国科学(物理学 力学 天文学)

CSTPCD北大核心
影响因子:0.644
ISSN:1674-7275
年,卷(期):2024.54(3)
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