Low-Dimensional Materials for Disruptive Microwave Antennas Design

C. Tripon-Canseliet, J. Chazelas
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Abstract

This chapter is devoted to a complete analysis of remarkable electromagnetic properties of nanomaterials suitable for antenna design miniaturization. After a review of state of the art mesoscopic scale modeling tools and characterization techniques in microwave domain, new approaches based on wideband material parameters identification (complex permittivity and conductivity) will be described from impedance equivalence formulation achievement by de-embedding techniques applicable in integrated technology or in free space. A focus on performances of 1D materials such as vertically aligned multi-wall carbon nanotube (VA-MWCNT) bundles, from theory to technology, will be presented as a disruptive demonstration for defense and civil applications as in radar systems.
用于破坏性微波天线设计的低维材料
本章全面分析了适用于天线小型化设计的纳米材料卓越的电磁特性。在回顾了微波领域中最先进的介观尺度建模工具和表征技术之后,将从阻抗等效公式中描述基于宽带材料参数识别(复介电常数和电导率)的新方法,该方法适用于集成技术或自由空间的去嵌入技术。重点关注一维材料的性能,如垂直排列的多壁碳纳米管(VA-MWCNT)束,从理论到技术,将作为国防和民用应用的颠覆性演示,如雷达系统。
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