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Systematic realization of double-zero-index phononic crystals with hard inclusions

机译:具有硬夹杂物的双零折射率声子晶体的系统实现

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摘要

A systematic process is described to realize double-zero-index phononic crystals with Dirac-like points experimentally. This type of crystal normally has softer inclusion material than its surroundings medium, allowing mapping into a zero-index medium under certain conditions but also making experimental implementation difficult. On the other hand, realizing phononic crystals with hard inclusions can be experimentally more feasible, but the mapping conditions cannot be directly applied to hard-inclusion crystals such that mapping is not systematically guaranteed in these cases. Moreover, even if such crystals become realizable, there is a lack of a systematic design process which can be used to optimize or to redesign the crystals, which largely limits their potential applications. In this paper, we discover the essential conditions for realizing phononic crystals with hard inclusions and propose a methodology for the systematic design of these crystals using homogenization based on the effective medium theory. Using the proposed method, a double-zero-index phononic crystal with hard inclusions is optimized and experimentally realized for an underwater ultrasonic wave collimator.
机译:描述了一个系统过程,以实验方式实现具有狄拉克样点的双零折射率声子晶体。这种类型的晶体通常比周围的介质具有更柔软的包裹体,因此在某些条件下可以映射到零折射率介质,但也使得实验难以实现。另一方面,在实验上实现具有硬质夹杂物的声子晶体可能更可行,但是映射条件不能直接应用于硬质夹杂物晶体,因此在这种情况下不能系统地保证映射。而且,即使这种晶体变为可实现,也缺乏可用于优化或重新设计晶体的系统设计过程,这在很大程度上限制了它们的潜在应用。在本文中,我们发现了实现具有硬质夹杂物的声子晶体的必要条件,并基于有效介质理论,提出了利用均质化对这些晶体进行系统设计的方法。利用该方法对水下超声准直器进行了优化,并通过实验实现了具有硬质夹杂物的双零折射率声子晶体。

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