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基于电磁诱导透明的金属介质超材料及其太赫兹传感应用。

Electromagnetically induced transparency-based metal dielectric metamaterial and its terahertz sensing application.

作者信息

Reena Reena, Kalra Yogita, Kumar Ajeet

出版信息

Appl Opt. 2021 Dec 1;60(34):10610-10616. doi: 10.1364/AO.442948.

Abstract

In this paper, electromagnetically induced transparency has been reported in the metal-dielectric structure that provides the platform for high-quality factor Fano resonance in the terahertz region. The electric dipole in the metal ring provides a bright mode, while the electric and magnetic dipoles formed in the dielectric offer bright and dark modes, respectively. Two resonance dips have been obtained with a high-quality factor of 89.5 and 23 leads to a high figure of merit of sensor equal to 6 and 4 for the first and second resonance dips, respectively, which is useful for the design and development of metamaterial-based sensing devices and biosensors.

摘要

在本文中,已报道了在金属 - 电介质结构中实现的电磁诱导透明,该结构为太赫兹区域的高品质因子法诺共振提供了平台。金属环中的电偶极提供一个亮模式,而电介质中形成的电偶极和磁偶极分别提供亮模式和暗模式。已获得两个共振凹陷,其品质因子分别高达89.5和23,这使得传感器的品质因数分别为6和4(分别对应于第一和第二共振凹陷),这对于基于超材料的传感装置和生物传感器的设计与开发很有用。

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