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Controlling the Electromagnetic Field Confinement with Metamaterials

机译:用超材料控制电磁场限制

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摘要

The definition of a precise illumination region is essential in many applications where the electromagnetic field should be confined in some specific volume. By using conventional structures, it is difficult to achieve an adequate confinement distance (or volume) with negligible levels of radiation leakage beyond it. Although metamaterial structures and metasurfaces are well-known to provide high controllability of their electromagnetic properties, this feature has not yet been applied to solve this problem. We present a method of electromagnetic field confinement based on the generation of evanescent waves by means of metamaterial structures. With this method, the confinement volume can be controlled, namely, it is possible to define a large area with an intense field without radiation leakage. A prototype working in the microwave region has been implemented, and very good agreement between the measurements and the theoretical prediction of field distribution has been obtained.
机译:在许多应将电磁场限制在特定体积内的应用中,精确照明区域的定义至关重要。通过使用常规结构,很难获得足够的限制距离(或体积),而超出其的辐射泄漏水平可以忽略不计。尽管众所周知超材料结构和超表面可提供其电磁特性的高度可控性,但此功能尚未应用于解决此问题。我们提出了一种基于通过超材料结构产生e逝波的电磁场约束方法。利用这种方法,可以控制限制体积,即,可以在没有辐射泄漏的情况下限定具有强场的大区域。已经实现了在微波区域中工作的原型,并且在测量值和场分布的理论预测之间获得了很好的一致性。

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    Bonache Jordi;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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