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通过电耦合和磁耦合的相长干涉实现太赫兹超材料中的宽带表面等离激元诱导透明

Broadband plasmon-induced transparency in terahertz metamaterials via constructive interference of electric and magnetic couplings.

作者信息

Wan Mingli, Song Yueli, Zhang Liufang, Zhou Fengqun

出版信息

Opt Express. 2015 Oct 19;23(21):27361-8. doi: 10.1364/OE.23.027361.

Abstract

Plasmon-induced transparency (PIT) is a result of destructive interference of different plasmonic resonators. Due to the extreme dispersion within the narrow transparency window, PIT metamaterials are utilized to realize slow light and nonlinear effect. However, other applications such as broadband filtering more desire a broad transmission frequency band at the PIT resonance. In this paper, a broadband PIT effect is demonstrated theoretically in a planar terahertz metamaterial, consisting of a U-shaped ring (USR) supporting electric and magnetic dipole modes as the bright resonator and a cut wire pair (CWP) possessing planar electric quadrupole and magnetic dipole modes as the dark resonator. The dark resonant modes of the CWP can be excited simultaneously via near-field by both the electric and magnetic dipole modes of the USR. When the electric as well as magnetic excitation pathways constructively interact with each other, the enhanced near-field coupling between bright and dark resonators gives rise to an ultra-broad transparency window across a frequency range greater than 0.61 THz in the transmittance spectrum.

摘要

表面等离激元诱导透明(PIT)是不同表面等离激元谐振器相消干涉的结果。由于在窄透明窗口内存在极端色散,PIT超材料被用于实现慢光和非线性效应。然而,诸如宽带滤波等其他应用更希望在PIT共振处有一个宽传输频带。本文在一种平面太赫兹超材料中从理论上证明了宽带PIT效应,该超材料由一个支持电偶极和磁偶极模式的U形环(USR)作为亮谐振器以及一个具有平面电四极和磁偶极模式的切割线对(CWP)作为暗谐振器组成。CWP的暗谐振模式可以通过近场同时被USR的电偶极和磁偶极模式激发。当电激发路径和磁激发路径相互相长干涉时,亮谐振器和暗谐振器之间增强的近场耦合在透射光谱中产生了一个跨越大于0.61太赫兹频率范围的超宽透明窗口。

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