A novel reconfigurable electromagnetically induced transparency based on solid state plasma

Xue Feng, Shaobin Liu, Hai‐feng Zhang, Yongdiao Wen, X. Kong, Lingling Wang
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引用次数: 1

Abstract

This paper presents a reconfigurable metamaterial and simulates the electromagnetically induced transparency (EIT) effect. The unit cell is composed of a cutwire (CW), a split ring resonator (SRR), and rectangular patches which are made up of solid-state GaAs-PIN cell. The interference between The CW and SRR produces a transparency window such as a special phenomenon of quantum optics called EIT. A reconfigurable EIT can be achieved by changing the split gap of SRR and the transparency window has flexible reconfigurability. This scheme which is constructed by solid state plasma (SSP) metamaterial provides an effective way to realize reconfigurable compact slow-light devices design.
一种基于固态等离子体的新型可重构电磁诱导透明材料
本文提出了一种可重构的超材料,并模拟了其电磁感应透明效应。单元电池由一个断线(CW)、一个分环谐振器(SRR)和由固态GaAs-PIN电池组成的矩形贴片组成。连续波和SRR之间的干涉产生了一个透明窗口,比如量子光学中一种叫做EIT的特殊现象。通过改变SRR的分割间隙可以实现可重构的EIT,透明窗口具有灵活的可重构性。该方案由固态等离子体(SSP)超材料构成,为实现可重构的紧凑型慢光器件设计提供了有效途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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