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Universal behaviour of high-Q Fano resonances in metamaterials: terahertz to near-infrared regime

机译:超材料中高Q Fano共振的普遍行为:太赫兹至近红外状态

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摘要

The observation of Fano resonance phenomena is universal across several branches of physics. Photonics is one of the most important areas of physics that mainly deals with the control of light propagation and localization through its interaction with natural and artificially engineered media. In an era of miniaturization, manipulation of light at micro-nanoscales has assumed unprecedented significance due to its potential to satisfy the mankind with disruptive future technologies. In this work, we present our study on the universality of high quality factor Fano resonances in planar metamaterials across terahertz and infrared parts of the electromagnetic spectrum. The narrow linewidth asymmetric Fano resonant metamaterials have tremendous potential to find applications in micro-nanoscale flat lasers, sensors, and ultra-resolution spectrometers.
机译:对法诺共振现象的观察在物理学的多个分支中是普遍的。光子学是物理学中最重要的领域之一,主要通过与自然和人工工程媒介的相互作用来处理对光传播和定位的控制。在小型化的时代,在微纳米尺度上操纵光具有空前的意义,这是因为它有潜力以颠覆性的未来技术满足人类的需求。在这项工作中,我们介绍了在太赫兹和电磁频谱的红外部分中平面超材料中高质量因子Fano共振的普遍性的研究。窄线宽非对称Fano共振超材料具有巨大的潜力,可用于微纳米级平面激光器,传感器和超分辨率光谱仪中。

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