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Conformally Mapped Multifunctional Acoustic Metamaterial Lens for Spectral Sound Guiding and Talbot Effect

机译:适形映射的多功能声学超材料透镜可实现频谱导引和塔尔伯特效应

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摘要

We demonstrate a conformally mapped multifunctional acoustic metamaterial Mikaelian lens. Mikaelian lens is a gradient medium with a hyperbolic secant refractive index profile that can realize functions like beam self-focusing. Unlike the conventional design approaches, with a conformal transformation method, only isotropic material parameters with gradient refractive index profiles are required for the construction of such lens. To realize desired gradient index distribution, we carefully design a new type of cross-channel-shaped acoustic metamaterial, whose refractive index can be effectively modulated by simply changing the slit opening size. The distinct capabilities of the metamaterial Mikaelian lens in manipulating acoustic waves are experimentally verified with the fabricated sample. Simultaneous sound guiding and Talbot effects, which normally require respective geometrical and wave acoustic approximations, are observed in simulations and experiments. Furthermore, those effects of shaping acoustic wave propagations were validated within a relatively wide frequency range. Our study reveals how the conformal transformation method can help to bridge the ray acoustics with wave acoustics. It offers opportunities to the development of novel multifunctional acoustic devices for various applications, such as sound and particle manipulations.
机译:我们展示了一个共形映射的多功能声学超材料米凯伦透镜。 Mikaelian透镜是一种具有双曲正割折射率分布的渐变介质,可以实现光束自聚焦等功能。与常规设计方法不同,采用保形变换方法,仅需要具有梯度折射率分布的各向同性材料参数来构造这种透镜。为了实现所需的梯度指数分布,我们精心设计了一种新型的交叉通道形声学超材料,其折射率可以通过简单地改变狭缝开口尺寸来有效地调节。用制造的样品通过实验验证了超材料Mikaelian透镜在操纵声波方面的独特功能。在模拟和实验中可以观察到同时具有声音导引和塔尔博特效应的效果,而后者通常需要相应的几何和波声近似。此外,在相对较宽的频率范围内验证了塑造声波传播的那些效果。我们的研究揭示了共形变换方法如何帮助将射线声学与波声学桥接起来。它为开发适用于各种应用(例如声音和粒子操纵)的新型多功能声学设备提供了机会。

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