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Design of photonic crystal superlens with improved image resolution

机译:具有改善的图像分辨率的光子晶体超透镜的设计

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摘要

In this paper, we theoretically investigate the spatial resolution of a triangular two-dimensional photonic crystal superlens. We prove that this resolution can be improved by optimizing the air hole radius as well as the air hole shape. First, it is found that by decreasing the radius of the air holes, the spatial resolution is improved significantly. Next, we demonstrate that using elliptic air holes instead of circular air holes in a triangular two-dimensional photonic crystal can leads to good-quality images and focusing, with effective refractive index n(eff) = -1 and enhanced image resolution. It is also shown that for the case of two sources, the resolution of such a photonic crystal lens can be made indeed better than the radiation wavelength.
机译:在本文中,我们从理论上研究了三角形二维光子晶体超透镜的空间分辨率。我们证明可以通过优化气孔半径以及气孔形状来提高此分辨率。首先,发现通过减小气孔的半径,空间分辨率显着提高。接下来,我们证明在三角形二维光子晶体中使用椭圆形气孔代替圆形气孔可以产生高质量的图像和聚焦,有效折射率n(eff)= -1并提高了图像分辨率。还显示出,对于两个光源的情况,可以使这种光子晶体透镜的分辨率确实好于辐射波长。

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