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Realization of an Ultra-thin Metasurface to Facilitate Wide Bandwidth Wide Angle Beam Scanning

机译:超薄超颖表面的实现以促进宽带宽广角光束扫描

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摘要

A wide bandwidth, ultra-thin, metasurface is reported that facilitates wide angle beam scanning. Each unit cell of the metasurface contains a multi-resonant, strongly-coupled unequal arm Jerusalem cross element. This element consists of two bent-arm, orthogonal, capacitively loaded strips. The wide bandwidth of the metasurface is achieved by taking advantage of the strong coupling within and between its multi-resonant elements. A prototype of the proposed metasurface has been fabricated and measured. The design concept has been validated by the measured results. The proposed metasurface is able to alleviate the well-known problem of impedance mismatch caused by mutual coupling when the main beam of an array is scanned. In order to validate the wideband and wide scanning ability of the proposed metasurface, it is integrated with a wideband antenna array as a wide angle impedance matching element. The metasurface-array combination facilitates wide angle scanning over a 6:1 impedance bandwidth without the need for bulky dielectrics or multi-layered structures.
机译:据报道,宽带宽,超薄的超表面有助于广角光束扫描。超表面的每个晶胞都包含一个多共振,强耦合的不等臂的耶路撒冷十字架元素。该元件由两个弯臂,正交,容性加载的条带组成。超表面的宽带宽是通过利用其多共振元件内部和之间的强耦合来实现的。拟议的超颖表面的原型已被制造和测量。通过测量结果验证了设计理念。当扫描阵列的主光束时,提出的超颖表面能够减轻由互耦引起的众所周知的阻抗失配问题。为了验证所提出的超颖表面的宽带和宽扫描能力,它与宽带天线阵列集成为广角阻抗匹配元件。超表面阵列的组合有助于在6:1的阻抗带宽上进行广角扫描,而无需笨重的电介质或多层结构。

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