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A new class of tunable multi-layer meta-surfaces

机译:一类新的可调多层元表面

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摘要

A new class of tunable multi-layer meta-surfaces is presented whereby the proposed structures produce very low losses at millimeter wave frequencies. Two configurations are investigated as working examples of the proposed tuning technique. Initially, a tunable high impedance meta-surface is being studied, consisting of a square loop element printed on a dielectric substrate and placed over a ground plane creating an air cavity. Subsequently, the transmission and reflection properties of double layer meta-surfaces consisting of two square aperture arrays printed on dielectric substrates and separated by an air cavity are presented. Tuning of the reflection phase of the high impedance meta-surface and the bandpass filter response of the double layer meta-surface is achieved by means of piezoelectric actuators positioned around the surfaces. The proposed actuators dynamically change the thickness of the air cavities in both configurations, due to their property of expanding vertically under DC biasing, which results in tuning the reflection and transmission characteristics of the structures.
机译:提出了一种新型的可调多层超表面,从而使所提出的结构在毫米波频率下产生非常低的损耗。研究了两种配置,作为所提出的调整技术的工作示例。最初,正在研究一种可调谐的高阻抗超颖表面,该表面由印刷在介电基片上并放置在接地平面上的方形回路元件组成,从而形成空气腔。随后,提出了双层亚表面的透射和反射特性,该双层亚表面由印刷在介电基片上并由空气腔隔开的两个方形孔径阵列组成。高阻抗亚表面的反射相位和双层亚表面的带通滤波器响应的调整是通过位于表面周围的压电致动器来实现的。所提出的致动器由于其在直流偏压下垂直膨胀的特性而动态地改变了两种构造中的气孔的厚度,这导致调整结构的反射和透射特性。

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