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Handedness Dependent Electromagnetically Induced Transparency in Hybrid Chiral Metamaterials

机译:混合手性超材料中与手性有关的电磁感应透明度

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摘要

We provide the first experimental demonstration of the handedness dependent electromagnetically induced transparency (EIT) in chiral metamaterials during the interaction with circularly polarized waves. The observed chiral-sensitive EIT phenomena arise from the coherent excitation of a non-radiative mode in the component split ring resonators (SRRs) produced by the corresponding Born−Kuhn type (radiative) resonators that are responsible for the pronounced chirality. The coherent coupling, which is dominated by the bonding and antibonding resonances of the Born−Kuhn type resonators, leads to an extremely steep dispersion for a circularly polarized wave of predefined handedness. Accordingly, retrieved effective medium parameters from simulated results further reveal a difference of 80 in the group indices for left- and right-handed circularly polarized waves at frequencies within the EIT window, which can potentially result in handedness-sensitive pulse delays. These chiral metamaterials which enable a handedness dependent EIT effect may provide more degrees of freedom for designing circular polarization based communication devices.
机译:我们提供了与圆极化波相互作用期间手性超常材料中与手性相关的电磁感应透明性(EIT)的第一个实验证明。观察到的手性敏感的EIT现象是由负责明显手性的相应Born-Kuhn型(辐射)谐振器产生的分量裂环谐振器(SRR)中非辐射模式的相干激发引起的。相干耦合主要由Born-Kuhn型谐振器的键合和反键合共振主导,对于预定旋律的圆偏振波,其色散非常陡峭。因此,从模拟结果中检索到的有效介质参数进一步揭示了在EIT窗口内的频率下,左旋和右旋圆极化波的组索引之间相差80,这可能会导致对旋律敏感的脉冲延迟。这些使手性取决于EIT效果的手性超材料可以为设计基于圆极化的通信设备提供更多的自由度。

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