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Imaging the near field

机译:成像近场

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In an earlier paper we introduced the concept of the perfect lens which focuses both near and far electromagnetic fields, hence attaining perfect resolution. Here we consider refinements of the original prescription designed to overcome the limitations of imperfect materials. In particular we show that a multilayer stack of positive-and negative-refractive-index media is less sensitive to imperfections. It has been novel property of behaving like a fibre-optic bundle but one that acts on the near field, and not just the radiative component. The effects of retardation are included and minimized by making the slabs thinner. Absorption then dominates image resolution in the near field. The deleterious effects of absorption in the metal are reduced fro thinner layers.
机译:在较早的论文中,我们介绍了理想透镜的概念,该透镜聚焦近电磁场和远电磁场,从而获得理想的分辨率。在这里,我们考虑了旨在克服不完善材料的局限性的原始处方的改进。特别是,我们显示出正负折射率介质的多层堆叠对瑕疵的敏感性较低。它具有像光纤束一样的新颖特性,但它不仅作用于辐射分量,而且作用于近场。通过使平板更薄,可以将延迟的影响包括在内并最小化。然后,吸收将主导近场中的图像分辨率。金属中吸收的有害作用在较薄的层中减少。

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