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Experimental demonstration of microwave variable-focal-length lens with single-layer metamaterial based on split-ring-resonators

机译:基于分圈谐振器的单层超材料微波变焦透镜的实验演示

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We propose a variable-focal-length lens in the microwave band based single-layer metamaterial. To make the lens with single-layer metamaterial, we applied Fresnel-zone-plate theory, in which the transmission intensity distribution in the lens is controlled. In the lens, a split-ring-resonator (SRR) structure is used as a unit cell to utilize the loop-current resonance mode because it provides a small unit cell with a small aspect ratio. To electrically control the transmission characteristics, we mounted varactor diodes on the split gaps in the SRRs. Additional gaps are introduced into the SRRs to avoid breaking the asymmetry of the loop current path, which results in an 18-dB change in the intensity of the waves. By electrically controlling the location of the transparent and opaque zones according to Fresnel-zone-plate theory, we experimentally verified the dynamic control of focus and focal length with single-layer metamaterial.
机译:我们在基于微波频段的单层超材料中提出了一种可变焦距镜头。为了使镜片具有单层超材料,我们施加了菲涅耳区板理论,其中控制了镜头中的传输强度分布。在镜头中,分流环 - 谐振器(SRR)结构用作单元电池以利用环流谐振模式,因为它提供具有小宽高比的小型单元电池。为了电控制传输特性,我们在SRRS中的分流间隙上安装了变容二极管。将额外的间隙引入SRRS,以避免破坏环电流路径的不对称性,这导致波浪强度的18dB变化。通过根据菲涅耳区板理论电控制透明和不透明区域的位置,通过单层超材料进行实验验证了对焦和焦距的动态控制。

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