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Design of an acoustic superlens using single-phase metamaterials with a star-shaped lattice structure

机译:使用具有星形晶格结构的单相超材料设计声超透镜

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摘要

We propose a single-phase super lens with a low density that can achieve focusing of sound beyond the diffraction limit. The super lens has a star-shaped lattice structure made of steel that offers abundant resonances to produce abnormal dispersive effects as determined by negative parameter indices. Our analysis of the metamaterial band structure suggests that these star-shaped metamaterials have double-negative index properties, that can mediate these effects for sound in water. Simulations verify the effective focusing of sound by a single-phase solid lens with a spatial resolution of approximately 0.39 λ. This superlens has a simple structure, low density and solid nature, which makes it more practical for application in water-based environments.
机译:我们提出了一种低密度的单相超级透镜,可以实现超过衍射极限的声音聚焦。超级透镜具有由钢制成的星形晶格结构,该结构可产生大量共振,从而产生异常的色散效应(由负参数指数确定)。我们对超材料带结构的分析表明,这些星形超材料具有双负折射率特性,可以介导水中的这些效应。仿真验证了空间分辨率约为0.39λ的单相固体透镜对声音的有效聚焦。这种超透镜具有简单的结构,低密度和坚固的性质,这使其在水基环境中的应用更加实用。

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