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Electrical access to critical coupling of circularly polarized waves in graphene chiral metamaterials

机译:石墨烯手性超材料中圆极化波的临界耦合的电接触

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摘要

Active control of polarization states of electromagnetic waves is highly desirable because of its diverse applications in information processing, telecommunications, and spectroscopy. However, despite the recent advances using artificial materials, most active polarization control schemes require optical stimuli necessitating complex optical setups. We experimentally demonstrate an alternative—direct electrical tuning of the polarization state of terahertz waves. Combining a chiral metamaterial with a gated single-layer sheet of graphene, we show that transmission of a terahertz wave with one circular polarization can be electrically controlled without affecting that of the other circular polarization, leading to large-intensity modulation depths (>99%) with a low gate voltage. This effective control of polarization is made possible by the full accessibility of three coupling regimes, that is, underdamped, critically damped, and overdamped regimes by electrical control of the graphene properties.
机译:由于电磁波在信息处理,电信和光谱学中的各种应用,因此非常需要主动控制电磁波的极化状态。然而,尽管最近使用人造材料取得了进步,但是大多数有源偏振控制方案仍需要光学刺激,从而需要复杂的光学装置。我们通过实验证明了另一种方法-直接电调谐太赫兹波的偏振态。将手性超材料与石墨烯的门控单层片相结合,我们显示具有一个圆极化的太赫兹波的传输可以在不影响另一个圆极化的情况下进行电控制,从而导致大强度调制深度(> 99% )具有较低的栅极电压。可以通过三种耦合方式的完全可及性来实现这种有效的极化控制,即通过石墨烯性质的电控制实现欠阻尼,临界阻尼和过阻尼机制。

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