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Experimental realization of an ultra-thin and continuous scanning metasurface mimicking a Luneburg lens

机译:模拟吕讷堡透镜的超薄连续扫描超表面的实验实现

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摘要

Luneburg lens is traditionally a spherical dielectric with centro-symmetric and graded refractive index, which has been widely applied in civilian and military fields due to its outstanding abilities of focusing or collimating electromagnetic waves. However, the existing designs of Luneburg lens generally suffer from the disadvantages of bulkiness, complex fabrication process, and limited scanning angles, etc. Herein, a planar metasurface that could mimic the planar Luneburg lens is designed by utilizing the addition theorem. It has been experimentally verified that the Luneburg-like lens has large and continuous scanning angles from −52° to 52° at a frequency of 10 GHz if an excitation antenna is moved along a straight line. Besides, the total thickness of the proposed lens is only 3 mm and it has the advantages of low cost, ease of fabrication, as well as being isolated from the feeder. As a result, the proposed Luneburg-like lens has great potential values of being flexibly applied in numerous fields.
机译:吕讷堡透镜传统上是一种球面电介质,具有中心对称和分级折射率,由于其出色的聚焦或准直电磁波能力,已广泛应用于民用和军用领域。然而,现有的吕讷堡透镜设计普遍存在体积大、制造工艺复杂、扫描角度有限等缺点。本文利用加法定理设计了一种可以模拟平面Luneburg透镜的平面超表面。实验证明,如果激发天线沿直线移动,则类吕讷堡透镜在10 GHz的频率下具有从-52°到52°的大连续扫描角度。此外,所提出的透镜的总厚度仅为3 mm,具有成本低、易于制造以及与进料器隔离等优点。因此,所提出的类吕讷堡透镜具有在众多领域灵活应用的巨大潜在价值。

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