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Experimental verification of broadband antennas loaded with metamaterials

机译:载有超材料的宽带天线的实验验证

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The intrinsic frequency dispersion has been usually considered as a relevant drawback of metamaterials, limiting their application to narrowband microwave components. However, it has been recently demonstrated that a particular metamaterial-based lens, consisting of a combination of an epsilon-near-zero (ENZ) material and air, is able to enhance the gain of short horn antennas over a broad frequency range. This interesting result has been achieved by exploiting the dispersive nature of ENZ metamaterials. In this contribution, we further discuss the latter aspect, giving more details about the physical mechanism enabling broadband operation of shortened horns loaded with ENZ-air lenses. The discussion is supported by a set of experimental results obtained on a fabricated prototype.
机译:通常,固有频率色散通常被视为超材料的一个相关缺点,从而限制了它们在窄带微波组件中的应用。然而,最近已经证明,由ε-接近零(ENZ)材料和空气的组合构成的特定的基于超材料的透镜能够在较宽的频率范围内增强短喇叭天线的增益。通过利用ENZ超材料的分散性,已经获得了这一有趣的结果。在本文中,我们将进一步讨论后一个方面,并提供有关使装有ENZ-air透镜的短号角能够实现宽带操作的物理机制的更多详细信息。讨论得到了在预制原型机上获得的一组实验结果的支持。

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