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FDTD Modeling of electromagnetic cloaks

机译:电磁披风的FDTD建模

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摘要

Metamaterials have the potential to control and manipulate the wave propagation in a manner that eludes the conventional materials, because of their periodic nature that can either be small-scale or resonant. Their use may enable us to create highly directional antennas, enhance the performance of small antennas by making them appear as though the electrical lengths were much larger, and design highly integrated transceiver systems that can be packaged in a limited space. Although the practical applications of metamaterials are currently limited by their loss characteristics and operational bandwidths, it is very important to develop efficient modeling tools to quantify and represent the characteristics of metamaterials and their behaviour, especially when they form an integral part of complex electromagnetic systems.
机译:由于超材料的周期性性质(可能是小规模的或共振的),超材料具有以传统材料所无法控制的方式控制和操纵波传播的潜力。它们的使用可能使我们能够制造出高度定向的天线,通过使小天线看起来像电气长度大得多来提高其性能,并设计可以在有限空间内封装的高度集成的收发器系统。尽管目前超材料的实际应用受到其损耗特性和工作带宽的限制,但开发有效的建模工具来量化和表示超材料的特性及其行为非常重要,尤其是当它们构成复杂电磁系统的组成部分时。

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