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Extreme stiffness hyperbolic elastic metamaterial for total transmission subwavelength imaging

机译:用于全透射亚波长成像的极度刚度双曲弹性超材料

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摘要

Subwavelength imaging by metamaterials and extended work to pursue total transmission has been successfully demonstrated with electromagnetic and acoustic waves very recently. However, no elastic counterpart has been reported because earlier attempts suffer from considerable loss. Here, for the first time, we realize an elastic hyperbolic metamaterial lens and experimentally show total transmission subwavelength imaging with measured wave field inside the metamaterial lens. The main idea is to compensate for the decreased impedance in the perforated elastic metamaterial by utilizing extreme stiffness, which has not been independently actualized in a continuum elastic medium so far. The fabricated elastic lens is capable of directly transferring subwavelength information from the input to the output boundary. In the experiment, this intriguing phenomenon is confirmed by scanning the elastic structures inside the lens with laser scanning vibrometer. The proposed elastic metamaterial lens will bring forth significant guidelines for ultrasonic imaging techniques.
机译:最近,通过电磁波和声波已经成功地证明了通过超材料进行的亚波长成像以及为实现全传输而进行的扩展工作。然而,由于早期的尝试遭受了相当大的损失,因此没有弹性对应物的报道。在这里,我们首次实现了一种弹性双曲超材料透镜,并通过实验显示了超材料透镜内部具有测量波场的全透射亚波长成像。主要思想是通过利用极高的刚度来补偿穿孔的弹性超材料中减小的阻抗,到目前为止,这在连续弹性介质中尚未独立实现。所制造的弹性透镜能够将亚波长信息从输入直接传递到输出边界。在实验中,通过用激光扫描振动计扫描透镜内部的弹性结构可以证实这种有趣的现象。提出的弹性超材料透镜将为超声成像技术带来重要指导。

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