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Radiation Characteristics of Tunable Graphennas in the Terahertz Band

机译:太赫兹频带中可调谐石墨天线的辐射特性

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摘要

Graphene-enabled wireless communications constitute a novel paradigm which has been proposed to implement wireless communications among nanosystems. Indeed, graphene-based plasmonic nano-antennas, or graphennas, just a few micrometers in size have been predicted to radiate electromagnetic waves at the terahertz band. In this work, the important role of the graphene conductivity in the characteristics of graphennas is analyzed, and their radiation performance both in transmission and reception is numerically studied. The resonance frequency of graphennas is calculated as a function of their length and width, both analytically and by simulation. Moreover, the influence of a dielectric substrate with a variable size, and the position of the patch with respect to the substrate is also evaluated. Further, important properties of graphene, such as its chemical potential or its relaxation time, are found to have a profound impact in the radiation properties of graphennas. Finally, the radiation pattern of a graphenna is compared to that of an equivalent metallic antenna. These results will prove useful for designers of future graphennas, which are expected to enable wireless communications among nanosystems.
机译:启用石墨烯的无线通信构成了一种新颖的范例,已被提出来实现纳米系统之间的无线通信。确实,已经预言,只有几微米大小的基于石墨烯的等离子体纳米天线或石墨天线会在太赫兹频带辐射电磁波。在这项工作中,分析了石墨烯电导率在石墨天线特性中的重要作用,并数值研究了它们在发射和接收中的辐射性能。通过分析和仿真,可以计算出石墨天线的谐振频率,作为其长度和宽度的函数。此外,还评估了尺寸可变的电介质基板的影响以及贴片相对于基板的位置。此外,发现石墨烯的重要性质,例如其化学势或其弛豫时间,对石墨天线的辐射性质具有深远的影响。最后,将石墨天线的辐射图与等效金属天线的辐射图进行比较。这些结果对于未来的石墨天线设计者将是有用的,后者有望实现纳米系统之间的无线通信。

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