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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Graphene-based Plasmonic Nano-Antenna for Terahertz Band Communication in Nanonetworks
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Graphene-based Plasmonic Nano-Antenna for Terahertz Band Communication in Nanonetworks

机译:用于纳米网络中太赫兹频带通信的基于石墨烯的等离子纳米天线

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摘要

Nanonetworks, i.e., networks of nano-sized devices, are the enabling technology of long-awaited applications in the biological, industrial and military fields. For the time being, the size and power constraints of nano-devices limit the applicability of classical wireless communication in nanonetworks. Alternatively, nanomaterials can be used to enable electromagnetic (EM) communication among nano-devices. In this paper, a novel graphene-based nano-antenna, which exploits the behavior of Surface Plasmon Polariton (SPP) waves in semi-finite size Graphene Nanoribbons (GNRs), is proposed, modeled and analyzed. First, the conductivity of GNRs is analytically and numerically studied by starting from the Kubo formalism to capture the impact of the electron lateral confinement in GNRs. Second, the propagation of SPP waves in GNRs is analytically and numerically investigated, and the SPP wave vector and propagation length are computed. Finally, the nano-antenna is modeled as a resonant plasmonic cavity, and its frequency response is determined. The results show that, by exploiting the high mode compression factor of SPP waves in GNRs, graphene-based plasmonic nano-antennas are able to operate at much lower frequencies than their metallic counterparts, e.g., the Terahertz Band for a one-micrometer-long ten-nanometers-wide antenna. This result has the potential to enable EM communication in nanonetworks.
机译:纳米网络,即纳米级设备的网络,是在生物,工业和军事领域中期待已久的应用的使能技术。目前,纳米设备的尺寸和功率限制限制了经典无线通信在纳米网络中的适用性。或者,可以使用纳米材料来实现纳米设备之间的电磁(EM)通信。本文提出,建模和分析了一种新型的基于石墨烯的纳米天线,它利用了表面等离子极化波(SPP)在半有限尺寸石墨烯纳米带(GNR)中的行为。首先,从久保形式主义入手,对GNRs的电导率进行了分析和数值研究,以捕获GNRs中电子侧向约束的影响。其次,对GNR中SPP波的传播进行了分析和数值研究,并计算了SPP波矢量和传播长度。最后,将纳米天线建模为共振等离子体腔,并确定其频率响应。结果表明,通过利用GNR中SPP波的高模压缩率,基于石墨烯的等离子体纳米天线能够以比其金属同行低得多的频率工作,例如太赫兹带为一微米长。十纳米宽的天线。该结果具有在纳米网络中实现EM通信的潜力。

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