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Subwavelength Planar Leaky-Wave Components With Metamaterial Bilayers

机译:具有超材料双层的亚波长平面泄漏波组件

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摘要

The potential use of metamaterial planar bilayers for synthesizing compact subwavelength leaky-wave radiators in the microwave regime is analyzed in detail. In particular, the possibility of pairing "complementary" metamaterials in order to reduce the dimensions of microwave components is explored for the leaky-wave operation of an open waveguide consisting of a grounded pair of planar layers. In connection with our similar findings in other setups employing such complementary pairings, here we show how the compact resonance at the interface between "negative" and "positive" materials may also be properly exploited in this context. Choosing materials with low constitutive parameters, moreover, shows to be effective for enhancing the directivity of these components. We explore in detail the notable guidance and radiation properties of the anomalous natural modes supported by these bilayered structures, giving some physical insights into the anomalous phenomenon and considering the possible limitations in some realistic setups
机译:详细分析了超材料平面双层在微波范围内合成紧凑的亚波长漏波辐射器的潜在用途。特别是,探讨了对“互补”超材料进行配对以减小微波组件尺寸的可能性,以研究由一对接地的平面层组成的开放波导的泄漏波操作。结合我们在采用这种互补配对的其他设置中的类似发现,这里我们展示了在这种情况下如何也可以适当利用“负”和“正”材料之间界面处的紧密共振。此外,选择具有低本构参数的材料可有效提高这些组件的方向性。我们将详细研究这些双层结构所支持的异常自然模式的显着导引和辐射特性,从而对异常现象提供一些物理见解,并考虑某些实际设置中的可能限制

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