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Time-Domain Analysis of Graphene-Based Miniaturized Antennas for Ultra-Short-Range Impulse Radio Communications

机译:超短距离脉冲无线电通信中基于石墨烯的微型天线的时域分析

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摘要

Graphene is enabling a plethora of applications in a wide range of fields due to its unique electrical, mechanical, and optical properties. Among them, graphene-based plasmonic miniaturized antennas (or shortly named, ) are garnering growing interest in the field of communications. In light of their reduced size, in the micrometric range, and an expected radiation frequency of a few terahertz, graphennas offer means for the implementation of ultra-short-range wireless communications. Motivated by their high radiation frequency and potentially wideband nature, this paper presents a methodology for the time-domain characterization and evaluation of graphennas. The proposed framework is highly vertical, as it aims to build a bridge between technological aspects, antenna design, and communications. Using this approach, qualitative and quantitative analyses of a particular case of graphenna are carried out as a function of two critical design parameters, namely, chemical potential and carrier mobility. The results are then compared to the performance of equivalent metallic antennas. Finally, the suitability of graphennas for ultra-short-range communications is briefly discussed.
机译:石墨烯因其独特的电气,机械和光学性能而在广泛的领域中实现了众多应用。其中,基于石墨烯的等离激元小型化天线(或简称为)在通信领域引起了越来越多的兴趣。考虑到它们的尺寸减小,在微米范围内以及预期的几太赫兹的辐射频率,石墨天线为实现超短距离无线通信提供了手段。由于其高辐射频率和潜在的宽带特性,本文提出了一种石墨天线的时域表征和评估方法。拟议的框架是高度垂直的,因为它旨在在技术方面,天线设计和通信之间架起一座桥梁。使用这种方法,可以根据两个关键设计参数,即化学势和载流子迁移率,对特定情况的石墨烯进行定性和定量分析。然后将结果与等效金属天线的性能进行比较。最后,简要讨论了石墨天线在超短距离通信中的适用性。

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