Ma Fuyin, Huang Meng, Xu Yicai, Wu Jiu Hui
School of Mechanical Engineering & State Key Laboratory for Strength and Vibration of Mechanical Structure, Xi'an Jiaotong University, Xi'an, 710049, China.
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, China.
Sci Rep. 2018 Apr 12;8(1):5906. doi: 10.1038/s41598-018-24231-3.
In this paper, we propose a bilayer plate-type lightweight double negative metasurface based on a new synergetic coupling design concept, by which the perfect absorption, double negative bands, free manipulation of phase shifts with a 2π span and acoustic cloak can be successively realized. Firstly, the synergetic behavior between resonant and anti-resonant plates is presented to construct a bilayer unit in which each component respectively provides a pre-defined function in realizing the perfect absorption. Based on this bilayer structure, a double negative band with simultaneously negative effective mass density and bulk modulus is obtained, which, as a metasurface, can obtain continuous phase shifts almost completely covering a 2π range, thus facilitating the design of a three-dimensional (3D) acoustic cloak. In addition, based on this strong sound absorption concept, a two-dimensional (2D) omnidirectional broadband acoustical dark skin, covering between 800 to 6000 Hz, is also demonstrated through the proposed bilayer plate-type structure form. The proposed design concepts and metasurfaces have widespread potential application values in strong sound attenuation, filtering, superlens, imaging, cloak, and extraordinary wave steering, in which the attributes of strong absorption, double negative parameters or continuous phase shifts with full 2π span are required to realize the expected extraordinary physical features.
在本文中,我们基于一种新的协同耦合设计理念,提出了一种双层平板型轻质双负超表面,通过该理念可以依次实现完美吸收、双负频段、2π跨度的相移自由操控以及声学隐身衣。首先,展示了谐振板和反谐振板之间的协同行为,以构建一个双层单元,其中每个组件在实现完美吸收方面分别提供预定义的功能。基于这种双层结构,获得了一个同时具有负有效质量密度和体积模量的双负频段,作为超表面,它几乎可以完全覆盖2π范围地获得连续相移,从而便于三维(3D)声学隐身衣的设计。此外,基于这种强吸声概念,通过所提出的双层平板型结构形式,还展示了一种覆盖800至6000赫兹的二维(2D)全向宽带声学暗皮。所提出的设计理念和超表面在强声衰减、滤波、超透镜、成像、隐身衣和异常波操纵等方面具有广泛的潜在应用价值,其中需要强吸收、双负参数或2π全跨度连续相移等属性来实现预期的特殊物理特性。