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A tunable microwave slot antenna based on graphene

机译:一种基于石墨烯的可调谐微波缝隙天线

摘要

The paper presents the experimental and modeling results of a microwave slot antenna in a coplanar configuration based on graphene. The antennas are fabricated on a 4 in. high-resistivity Si wafer, with a similar to 300 nm SiO2 layer grown through thermal oxidation. A CVD grown graphene layer is transferred on the SiO2. The paper shows that the reflection parameter of the antenna can be tuned by a DC voltage. 2D radiation patterns at various frequencies in the X band (8-12 GHz) are then presented using as antenna backside a microwave absorbent and a metalized surface. Although the radiation efficiency is lower than a metallic antenna, the graphene antenna is a wideband antenna while the metal antennas with the same geometry and working at the same frequencies are narrowband. (c) 2015 AIP Publishing LLC.
机译:本文介绍了基于石墨烯的共面配置微波缝隙天线的实验和建模结果。天线是在4英寸高电阻率的Si晶圆上制造的,该晶圆具有通过热氧化生长的类似于300 nm的SiO2层。 CVD生长的石墨烯层转移到SiO2上。该论文表明,天线的反射参数可以通过直流电压来调节。然后使用微波吸收剂和金属化表面作为天线背面,展示了X波段(8-12 GHz)中各种频率的2D辐射图。尽管辐射效率低于金属天线,但是石墨烯天线是宽带天线,而具有相同几何形状和工作频率的金属天线是窄带。 (c)2015 AIP Publishing LLC。

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