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A dynamically reconfigurable Fano metamaterial through graphene tuning for switching and sensing applications

机译:通过石墨烯调整可动态重新配置的Fano超材料用于开关和传感应用

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摘要

We report on a novel electrically tunable hybrid graphene-gold Fano resonator. The proposed metamaterial consists of a square graphene patch and a square gold frame. The destructive interference between the narrow- and broadband dipolar surface plasmons, which are induced respectively on the surfaces of the graphene patch and the gold frame, leads to the plasmonic equivalent of electromagnetically induced transparency (EIT). The response of the metamaterial is polarization independent due to the symmetry of the structure and its spectral features are shown to be highly controllable by changing a gate voltage applied to the graphene patch. Additionally, effective group index of the device is retrieved and is found to be very high within the EIT window suggesting its potential use in slow light applications. Potential outcomes such as high sensing ability and switching at terahertz frequencies are demonstrated through numerical simulations with realistic parameters.
机译:我们报告了一种新型的电可调混合石墨烯-金法诺谐振器。拟议的超材料由方形石墨烯贴片和方形金框组成。分别在石墨烯贴片和金框的表面上感应的窄和宽带偶极子表面等离子体激元之间的破坏性干扰,导致了电磁诱导透明性(EIT)的等离子体等效。由于结构的对称性,超材料的响应与偏振无关,并且通过改变施加到石墨烯贴片的栅极电压,可证明其光谱特征是高度可控的。此外,在EIT窗口中检索到该设备的有效组索引,发现该组的索引非常高,表明其在慢光应用中的潜在用途。通过具有实际参数的数值模拟,可以证明诸如高感测能力和太赫兹频率切换等潜在结果。

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