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Low Voltage Graphene-Based Amplitude Modulator for High Efficiency Terahertz Modulation

机译:基于低压石墨烯的振幅调制器,用于高效太赫兹调制

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In this paper, a high-efficiency terahertz amplitude modulation device based on a field-effect transistor has been proposed. The polarization insensitive modulator is designed to achieve a maximum experimental modulation depth of about 53% within 5 V of gate voltages using monolayer graphene. Moreover, the manufacturing processes are inexpensive. Two methods are adopted to improve modulation performance. For one thing, the metal metamaterial designed can effectively enhance the electromagnetic field near single-layer graphene and therefore greatly promote the graphene’s modulation ability in terahertz. For another, polyethylene oxide-based electrolytes (PEO:LiClO 4 ) acts as a high-capacity donor, which makes it possible to dope single-layer graphene at a relatively low voltage.
机译:本文提出了一种基于场效应晶体管的高效太赫兹幅度调制装置。偏振不敏感调节剂设计用于使用单层石墨烯在5V栅极电压范围内实现最大实验调制深度约53%。此外,制造过程廉价。采用两种方法来提高调制性能。首先,金属超材料设计可以有效地增强单层石墨烯附近的电磁场,因此大大促进了石墨烯在太赫兹的调制能力。对于另一个,基于聚环氧乙烷基电解质(PEO:LICLO 4)用作高容量供体,这使得可以以相对低的电压掺杂单层石墨烯。

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