超材料
石墨烯
光学
等离子体子
透明度(行为)
材料科学
负折射
表面等离子体子
变换光学
电磁感应透明
光电子学
分裂环谐振器
物理
纳米技术
计算机科学
计算机安全
作者
Pengliang Lei,Guozheng Nie,Huilin Li,Nanliu Liu,Zonglin Li,Liang Peng,Xiaofang Tang,Enduo Gao
出处
期刊:Optics Express
[The Optical Society]
日期:2024-06-21
卷期号:32 (14): 25435-25435
被引量:1
摘要
Enhancing light-matter interaction is crucial for boosting the performance of nanophotonic devices, which can be achieved via plasmon-induced transparency (PIT). This study introduces what we believe to be a novel E-type metamaterial structure crafted from a single graphene layer. The structure, comprising a longitudinal graphene ribbon and three horizontal graphene strips, leverages destructive interference at terahertz frequencies to manifest triple plasmon-induced transparency (triple-PIT). Through a comparison of simulations using the finite difference time domain (FDTD) method and theoretical coupled-mode calculations, we elucidate the physical mechanism behind triple-PIT. Our analysis shows that the PIT effect arises from the interplay between two single-PITs phenomena, further explored through field distribution studies. Additionally, we investigate the impact of varying Fermi levels and carrier mobility on the transmission spectrum, achieving amplitude modulation in photoelectric switches of 85.5%, 99.2%, and 93.8% at a carrier mobility of 2 m
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