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Comparison of the resonant frequency in graphene and metallic nano-antennas

机译:石墨烯和金属纳米天线中谐振频率的比较

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The scalability of the resonant frequency in graphene-based nano-antennas (graphennas) and metallic nanoantennas as a function of their length is analyzed. The antenna resonances are obtained by combining the dispersion relation in free-standing graphene and gold layers, respectively, with the resonance condition. Graphennas are found to have a better scalability in terms of their resonant frequency with respect to metallic nano-antennas as their length is reduced to a few μm. These results open up the possibility to build micrometer-sized graphennas that resonate in the terahertz band, at a frequency up to two orders of magnitude below metallic nano-antennas with the same size. Graphennas are thereby envisaged to enable the implementation of wireless communications among nanosystems.
机译:分析了基于石墨烯的纳米天线(图形)和金属纳米纳米中的谐振频率的可扩展性,作为它们的长度的函数。通过将分散关系分别与共振条件相结合,通过将分散关系分别与谐振条件相结合来获得天线共振。发现图形环是在其谐振频率相对于金属纳米天线的谐振频率方面具有更好的可扩展性,因为它们的长度降低到几μm。这些结果打开了构建在太赫兹带中产生的微米尺寸的石墨段,其频率高达两个具有相同尺寸的金属纳米天线下方的两个数量级。由此设想了图形环节,以实现纳米系统之间的无线通信。

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