College of Computer Science and Technology, Nanjing Tech University, Nanjing, 211800, P. R. China.
Key Laboratory of Modern Acoustics, Ministry of Education, Nanjing University, Nanjing, 210093, P. R. China.
Sci Rep. 2017 Sep 6;7(1):10587. doi: 10.1038/s41598-017-10781-5.
We designed a gradient acoustic metasurface to manipulate acoustic wavefront freely. The broad bandwidth and high efficiency transmission are achieved by the acoustic metasurface which is constructed with a series of unit cells to provide desired discrete acoustic velocity distribution. Each unit cell is composed of a decorated metal plate with four periodically arrayed Helmholtz resonators (HRs) and a single slit. The design employs a gradient velocity to redirect refracted wave and the impedance matching between the metasurface and the background medium can be realized by adjusting the slit width of unit cell. The theoretical and numerical results show that some excellent wavefront manipulations are demonstrated by anomalous refraction, non-diffracting Bessel beam, sub-wavelength flat focusing, and effective tunable acoustic negative refraction. Our designed structure may offer potential applications for the imaging system, beam steering and acoustic lens.
我们设计了梯度声学超表面来自由地操控声波前。通过声学超表面实现了宽带宽和高效率传输,该超表面由一系列单元构成,以提供所需的离散声波速度分布。每个单元由一个带有四个周期性排列的亥姆霍兹谐振器(HR)和一个狭缝的装饰金属板组成。该设计采用梯度速度来重新引导折射波,通过调整单元的狭缝宽度可以实现超表面和背景介质之间的阻抗匹配。理论和数值结果表明,通过异常折射、无衍射贝塞尔光束、亚波长平板聚焦和有效可调谐声负折射,实现了一些出色的波前操控。我们设计的结构可能为成像系统、波束转向和声透镜提供潜在的应用。