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Holographic Surface Leaky-Wave Lenses With Circularly-Polarized Focused Near-Fields—Part I: Concept, Design and Analysis Theory

机译:圆偏振聚焦近场全息表面漏波透镜—第一部分:概念,设计和分析理论

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摘要

A novel concept of planar printed-circuit microwave lens, based on the transformation of a cylindrical surface wave into a modulated leaky wave, is presented in this paper. Inspired on holographic concepts, the ${rm TM}_{0}$ cylindrical leaky wave is properly tapered across the two-dimensional surface by using an Archimedean-spiral shaped slotted printed-circuit, so that it is obtained a quadratic-phase, quasi-uniform amplitude aperture distribution which creates a highly focused circularly-polarized near-field pattern. The first part of this paper describes the general analysis and synthesis methodology to obtain planar holographic lenses with high radiation and focusing efficiency. As an example, a printed-slot lens with $6lambda _{0}$ diameter and focal ratio $F/D=1$ operating at 10 GHz is designed and theoretically studied by simulations. The second part of the paper concentrates on the prototype and measurements.
机译:本文提出了一种新颖的平面印刷电路微波透镜的概念,该透镜基于圆柱面波向调制泄漏波的转换。受全息概念的启发, $ {rm TM} _ {0} $ 圆柱泄漏波在两个通过使用阿基米德螺旋形缝隙印刷电路对三维表面进行三维扫描,从而获得二次相位准均匀振幅孔径分布,从而产生高度聚焦的圆极化近场图案。本文的第一部分描述了获得具有高辐射和聚焦效率的平面全息透镜的一般分析和合成方法。例如,具有 $ 6lambda _ {0} $ 直径和焦距 $ F / D = 1 $ 并通过仿真进行了理论研究。本文的第二部分集中于原型和测量。

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