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An electromagnetic modulator based on electrically controllable metamaterial analogue to electromagnetically induced transparency

机译:基于类似于电磁感应透明性的电可控超材料的电磁调制器

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摘要

Electromagnetically induced transparency (EIT) is a promising technology for the enhancement of light-matter interactions, and recent demonstrations of the EIT analogue realized in artificial micro-structured medium have remarkably reduced the extreme requirement for experimental observation of EIT spectrum. In this paper, we propose to electrically control the EIT-like spectrum in a metamaterial as an electromagnetic modulator. A diode acting as a tunable resistor is loaded in the gap of paired wires to inductively tune the magnetic resonance, which induces remarkable modulation on the EIT-like spectrum through the metamaterial sample. The experimental measurements confirmed that the prediction of electromagnetic modulation in three narrow bands on the EIT-like spectrum, and a modulation contrast of up to 31 dB was achieved on the transmission through the metamaterial. Our results may facilitate the study on active/dynamical technology in translational metamaterials, which connect extraordinary manipulations on the flow of light in metamaterials, e.g., the exotic EIT, and practical applications in industry.
机译:电磁感应透明性(EIT)是增强光-质相互作用的一项有前途的技术,在人工微结构化介质中实现的EIT类似物的最新演示显着降低了对EIT光谱进行实验观察的极端要求。在本文中,我们建议以电子方式控制超材料中的类EIT谱,作为电磁调制器。在成对导线的间隙中装入一个充当可调电阻器的二极管,以感应方式调谐磁共振,从而通过超材料样本在EIT样光谱上引起显着的调制。实验测量结果证实,在类似EIT的光谱中的三个窄带中电磁调制的预测,在通过超材料的传输中实现了高达31 dB的调制对比度。我们的结果可能有助于对平移超材料中的主动/动力学技术的研究,该技术将对超材料中光流的非凡操纵(例如奇异的EIT)与工业上的实际应用联系起来。

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