太赫兹辐射
超材料
电磁感应透明
诺共振
分裂环谐振器
谐振器
光电子学
太赫兹光谱与技术
法诺平面
太赫兹超材料
超材料吸收剂
光学
材料科学
慢光
多波段设备
共振(粒子物理)
Q系数
物理
光子晶体
等离子体子
电信
可调谐超材料
远红外激光器
计算机科学
粒子物理学
天线(收音机)
激光器
数学
纯数学
作者
Yuxuan Chen,Y. Sun,Weijun Zhou,Xuefeng Qin,Qian Zhao,Yueke Wang,Ben‐Xin Wang
出处
期刊:Physica Scripta
[IOP Publishing]
日期:2024-08-23
卷期号:99 (10): 105546-105546
标识
DOI:10.1088/1402-4896/ad7338
摘要
Abstract A terahertz metamaterial structure consisting of two U-shaped split-ring resonators and a horizontal cut-line resonator is designed for realizing the electromagnetically induced transparency (EIT) effect and the Fano resonance effect. The genesis of the EIT and Fano resonance bifunctionality is illustrated by combining the near-field distribution analysis of transparent windows and transmission dips. Interestingly, the bifunctional dual-band transparency effect could transform into a single-functional single-band transparency effect when we change the position of the square metal sheet in the vertical direction of the composited terahertz metamaterial structure. In addition, based on the high-quality factor of Fano resonance response, the proposed bifunctional terahertz metamaterial device has good refractive index sensing sensitivity. These results indicate that our proposed terahertz metamaterial can provide guidance for the design of subsequent multifunctional and integrated metamaterials and optoelectronic devices.
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