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Terahertz electromagnetically-induced transparency of self-complementary meta-molecules on Croatian checkerboard

机译:太赫兹在克罗地亚棋盘上电磁诱导的自互补元分子的透明性

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摘要

A terahertz (THz) electromagnetically-induced transparency (EIT) phenomenon is observed from two types of self-complementary meta-molecules (MMs) based on rectangular shaped electric split-ring resonators (eSRR) on Croatian checkerboard. Each MM contains a couple of identical size eSRRs and a couple of structural inversed eSRRs twisted π/2 in checkerboard pattern. In the first type of MM (type-I), the gap is in the middle line of eSRR. In the second type of MM (type-II), the gap is on the two arms of eSRR. Both types of MMs exhibit EIT effect. A maximum 20 ps group delay is observed at the transparency window of 0.63 THz in type-I MM; while a maximum 6.0 ps group delay is observed at the transparent window of 0.60 THz in type-II MM. The distribution of surface currents and electrical energy reveals that only CeSRR contribute to the transparency window as well as the side-modes in type-I MM, where the current leakage via contact point contributes to the low-frequency side-mode, and the coupled local inductive-capacitive (LC) oscillation in CeSRRs contributes to the high-frequency side-mode. In type-II MM, however, the localized dipolar oscillator of CeSRR contributes to the low-frequency side-mode; while the hybridization of dipole oscillation on eSRR and LC resonance on CeSRR contributes to the high-frequency side-modes. Our experimental findings manifest a new approach to develop THz slow-light devices.
机译:从克罗地亚棋盘上基于矩形电开口环谐振器(eSRR)的两种类型的自互补超分子(MM)中观察到了太赫兹(THz)的电磁感应透明(EIT)现象。每个MM都包含几个相同大小的eSRR,以及两个在棋盘图案中扭曲π/ 2的结构反向eSRR。在第一种类型的MM(I型)中,间隙位于eSRR的中线。在第二种类型的MM(II型)中,差距在eSRR的两个方面。两种类型的MM都具有EIT效果。在I型MM的透明窗口中,在0.63 THz处观察到最大20 ps群时延;而在II型MM的透明窗口0.60 THz处观察到最大6.0 ps的群时延。表面电流和电能的分布表明,只有CeSRR有助于透明度窗口以及I型MM的侧模,其中通过接触点泄漏的电流有助于低频侧模,并且耦合CeSRR中的局部电感电容(LC)振荡有助于产生高频侧模。但是,在II型MM中,CeSRR的局部偶极振荡器有助于低频侧模。 eSRR上的偶极子振荡与CeSRR上的LC谐振的杂化有助于产生高频侧模。我们的实验结果表明开发THz慢光设备的新方法。

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