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金属-超导混合超材料中的电磁感应透明的经典类比。

Classical analogue of electromagnetically induced transparency with a metal-superconductor hybrid metamaterial.

机构信息

Center for Nanophysics and Advanced Materials, Department of Physics, University of Maryland, College Park, Maryland 20742-4111, USA.

出版信息

Phys Rev Lett. 2011 Jul 22;107(4):043901. doi: 10.1103/PhysRevLett.107.043901. Epub 2011 Jul 18.

Abstract

Metamaterials are engineered materials composed of small electrical circuits producing novel interactions with electromagnetic waves. Recently, a new class of metamaterials has been created to mimic the behavior of media displaying electromagnetically induced transparency (EIT). Here we introduce a planar EIT metamaterial that creates a very large loss contrast between the dark and radiative resonators by employing a superconducting Nb film in the dark element and a normal-metal Au film in the radiative element. Below the critical temperature of Nb, the resistance contrast opens up a transparency window along with a large enhancement in group delay, enabling a significant slowdown of waves. We further demonstrate precise control of the EIT response through changes in the superfluid density. Such tunable metamaterials may be useful for telecommunication because of their large delay-bandwidth products.

摘要

超材料是由小的电路组成的工程材料,能够与电磁波产生新颖的相互作用。最近,人们创造了一类新的超材料来模拟具有电磁感应透明(EIT)特性的介质的行为。在这里,我们引入了一种平面 EIT 超材料,它通过在暗元件中使用超导 Nb 薄膜和在辐射元件中使用正常金属 Au 薄膜,在暗和辐射谐振器之间产生非常大的损耗对比度。在 Nb 的临界温度以下,电阻对比度会打开一个透明窗口,同时群延迟会大大增强,从而使波显著减速。我们还通过改变超流密度进一步展示了对 EIT 响应的精确控制。由于其大的延迟带宽乘积,这种可调谐超材料可能对电信有用。

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