Gu Zhongming, Gao He, Liu Tuo, Li Yong, Zhu Jie
The Hong Kong Polytechnic University Shenzhen Research Institute, 18 Yuexing First Avenue, Shenzhen 518057, People's Republic of China.
Institute of Acoustics, Tongji University, 1239 Siping Road, Shanghai 200092, People's Republic of China.
J Acoust Soc Am. 2020 Sep;148(3):1636. doi: 10.1121/10.0001962.
Zero index metamaterials have shown the ability to achieve total transmission or reflection by embedding particular defects with various effective parameters. Here, we present that tunable sound transmission can be realized by configuring a subwavelength-sized dopant inside zero index acoustic metamaterials. Despite its small spatial signature, the dopant is able to strongly interact with the acoustic waves inside the whole zero index metamaterials. It is due to the essence of the zero effective index that can homogenize the pressure field within the metamaterials. Sound transmission can thus be fully switched on and off by adjusting the dopant's surface impedance. A simple rectangular cavity with varied lengths is proposed to provide the required impedance boundary. Our model of correlating the dopant design with sound transmission performance is validated theoretically and numerically. We further demonstrate the utilization of the proposed design to effectively modulate the sound focusing effect. Such a dopant-modulated sound transmission scheme, with its simplicity and capability, has potential applications in fields like noise control and ultrasonography.
零折射率超材料已显示出通过嵌入具有各种有效参数的特定缺陷来实现完全透射或反射的能力。在此,我们展示了通过在零折射率声学超材料内部配置亚波长尺寸的掺杂剂,可以实现可调谐的声音传输。尽管掺杂剂的空间特征很小,但它能够与整个零折射率超材料内部的声波强烈相互作用。这是由于零有效折射率的本质可以使超材料内的压力场均匀化。因此,通过调整掺杂剂的表面阻抗,可以完全打开和关闭声音传输。提出了一个长度可变的简单矩形腔来提供所需的阻抗边界。我们将掺杂剂设计与声音传输性能相关联的模型在理论和数值上得到了验证。我们进一步展示了所提出设计在有效调制声音聚焦效果方面的应用。这种掺杂剂调制的声音传输方案,兼具简单性和功能性,在噪声控制和超声检查等领域具有潜在应用。