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A Metamaterial Design Based on Electromagnetic Induction Transparency-Like Effect and Its Slow-Wave Performance

机译:基于电磁感应透明度效果及其慢波性能的超材料设计

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This paper proposes a new metamaterial design that can achieve electromagnetic induction transparency-like (EIT-like) effects in the microwave band. The unit structure of metamaterials consists of square rings and metal wires. The square ring acts as the “bright state” and the metal wire acts as the “dark state”. The destructive interference between the bright state and the dark state produces an EIT-like effect. In the simulation results, a transparent window centered at 4.00 GHz can be observed in the transmission spectrum. By studying the phase change of the transparent window, it is found that the group delay of the metamaterial structure can reach 0.39 ns at 4.00 GHz. This paper also studies the influence of the refractive index of the medium on the EIT-like effect. Numerical simulations show that such metamaterial is very sensitive to the refractive index of the medium, and the sensitivity is 15 mm/RIU. Our design can be extended to other frequency bands and may have potential applications in filtering, sensing, slow-light devices, and nonlinear optics.
机译:本文提出了一种新的超材料设计,可以在微波带中实现电磁感应透明度(EIT样)效应。超材料的单位结构由方形环和金属线组成。方环用作“亮状态”,金属线充当“暗状态”。明亮状态和黑暗状态之间的破坏性干扰产生了类似的效果。在仿真结果中,在传输光谱中可以观察到以4.00GHz为中心的透明窗口。通过研究透明窗口的相变,发现超材料结构的组延迟可以达到4.00 GHz的0.39ns。本文还研究培养基折射率对像素样效果的影响。数值模拟表明,这种超材料对培养基的折射率非常敏感,灵敏度为15毫米/ rIU。我们的设计可以扩展到其他频段,并且可能具有滤波,感测,慢光器件和非线性光学器件的潜在应用。

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