Super imaging with a plasmonic metamaterial: Role of aperture shape

Shiyi Xiao, Qiong He, Xueqing Huang, Lei Zhou
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引用次数: 14

Abstract

Through analyzing the transmission properties of metallic plates with periodic arrays of subwavelength apertures in different shapes, we found two conditions for such structures to work as super lenses. The working wavelength dictated by the aperture's shape resonance should be much larger than the array's periodicity, meanwhile the coupling between the aperture's waveguide modes and external radiations should be as small as possible. These two conditions contradict with each other for a square-shape aperture so that high index materials should be inserted into the apertures, while a fractal-shape aperture satisfies these two conditions simultaneously without using high-index insertions. Numerical simulations were performed to illustrate the imaging properties of these plasmonic lenses.

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等离子体超材料的超成像:孔径形状的作用
通过分析不同形状的亚波长周期阵列金属板的透射特性,我们发现了这种结构作为超级透镜的两个条件。孔径形状共振决定的工作波长应远大于阵列的周期性,同时孔径波导模式与外辐射之间的耦合应尽可能小。对于方形孔径,这两个条件是相互矛盾的,因此需要在孔径中插入高折射率的材料,而对于分形孔径,则不需要使用高折射率的插入,同时满足这两个条件。数值模拟说明了这些等离子体透镜的成像特性。
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