Zero refraction in natural materials and the mechanism of metal superlens
Zhou Yun-song, Huai‐Yu Wang, Hai Wang
Abstract
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Zhou Yun-song, Huai‐Yu Wang, Hai Wang
Abstract
Open-access reader
We found that a single negative material has a character of zero-refraction in near field, and point out that the mechanism of a metal superlens to image with the resolution exceeding the diffraction limitation is different from that of a perfect lens made of a double negative material. The principle of metal superlens is disclosed. Our numerical results based on the zero-refraction character coincide with the experimental results well. This work brings new understanding about the single negative materials and will lead the applications of metal superlens in right way.
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We found that a single negative material has a character of zero-refraction in near field, and point out that the mechanism of a metal superlens to image with the resolution exceeding the diffraction limitation is different from that of a perfect lens made of a double negative material. The principle of metal superlens is disclosed. Our numerical results based on the zero-refraction character coincide with the experimental results well. This work brings new understanding about the single negative materials and will lead the applications of metal superlens in right way.
Key concepts: Superlens, Negative refraction, Optics, Refraction, Lens (geology), Diffraction, Zero (linguistics), Character (mathematics)