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Tunable electromagnetically induced transparency in coupled three-dimensional split-ring-resonator metamaterials

机译:耦合三维裂环谐振器超材料中可调谐的电磁感应透明性

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摘要

Metamaterials have recently enabled coupling induced transparency due to interference effects in coupled subwavelength resonators. In this work, we present a three dimensional (3-D) metamaterial design with six-fold rotational symmetry that shows electromagnetically induced transparency with a strong polarization dependence to the incident electromagnetic wave due to the ultra-sharp resonance line width as a result of interaction between the constituent meta-atoms. However, when the six-fold rotationally symmetric unit cell design was re-arranged into a fourfold rotational symmetry, we observed the excitation of a polarization insensitive dual-band transparency. Thus, the 3-D split-ring resonators allow new schemes to observe single and multi-band classical analogues of electromagnetically induced transparencies that has huge potential applications in slowing down light, sensing modalities, and filtering functionalities either in the passive mode or the active mode where such effects could be tuned by integrating materials with dynamic properties.
机译:由于耦合的亚波长谐振器中的干扰效应,超材料最近已使耦合引起的透明性成为可能。在这项工作中,我们提出了具有六重旋转对称性的三维(3-D)超材料设计,该设计显示了由于超锐利共振线宽度导致的,对入射电磁波具有强极化依赖性的电磁感应透明性,这是由于组成亚原子之间的相互作用。但是,当六重旋转对称的晶胞设计重新排列为四重旋转对称时,我们观察到了偏振不敏感的双波段透明性的激发。因此,3-D开环谐振器允许采用新方案来观察电磁感应透明胶片的单波段和多波段经典类似物,在无源模式或有源模式下,在减慢光线,感应模式和滤波功能方面具有巨大的潜在应用价值。可以通过集成具有动态特性的材料来调整这种效果的模式。

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