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Focusing performance of Luneburg lenses based on a broadband artificial dielectric metamaterial

机译:基于宽带人工介电超材料的吕讷堡透镜的聚焦性能

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In this work we present the results of numerical investigation of the microwave Luneburg lenses based on a broadband metamaterial composed of radially diverging dielectric rods. The gradual Luneburg's permittivity profile is achieved in these lenses through arranging identical dielectrical thin rods with a spatially variable cross-section in various radial directions with a subwavelength separation. The influence of anisotropy effects on the lens's focussing performance is discussed. The results reveal that, although anisotropy of the structure of diverging rods causes aperture phase errors under certain feeding conditions it may operate as a Luneburg lens.
机译:在这项工作中,我们介绍了微波Luneburg透镜的数值研究结果,该透镜基于由径向分散的介电棒组成的宽带超材料。在这些透镜中,通过在不同的径向方向上以亚波长间隔排列具有相同的,具有空间可变横截面的介质细棒,可以实现逐步的Luneburg介电常数分布。讨论了各向异性效应对透镜聚焦性能的影响。结果表明,尽管在某些进给条件下发散杆结构的各向异性会引起孔径相位误差,但它可以用作Luneburg透镜。

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