Tian Zhenhua, Shen Chen, Li Junfei, Reit Eric, Gu Yuyang, Fu Hai, Cummer Steven A, Huang Tony Jun
Department of Mechanical Engineering and Materials Science, Duke University, Durham, NC 27708, USA.
Department of Electrical and Computer Engineering, Duke University, Durham, NC 27708, USA.
Adv Funct Mater. 2019 Mar 28;29(13). doi: 10.1002/adfm.201808489. Epub 2019 Feb 8.
Metasurfaces open up unprecedented potential for wave engineering using subwavelength sheets. However, a severe limitation of current acoustic metasurfaces is their poor reconfigurability to achieve distinct functions on demand. Here a programmable acoustic metasurface that contains an array of tunable subwavelength unit cells to break the limitation and realize versatile two-dimensional wave manipulation functions is reported. Each unit cell of the metasurface is composed of a straight channel and five shunted Helmholtz resonators, whose effective mass can be tuned by a robust fluidic system. The phase and amplitude of acoustic waves transmitting through each unit cell can be modulated dynamically and continuously. Based on such mechanism, the metasurface is able to achieve versatile wave manipulation functions, by engineering the phase and amplitude of transmission waves in the subwavelength scale. Through acoustic field scanning experiments, multiple wave manipulation functions, including steering acoustic waves, engineering acoustic beams, and switching on/off acoustic energy flow by using one design of metasurface are visually demonstrated. This work extends the metasurface research and holds great potential for a wide range of applications including acoustic imaging, communication, levitation, and tweezers.
超表面为利用亚波长薄片进行波工程开辟了前所未有的潜力。然而,当前声学超表面的一个严重限制是其可重构性较差,无法按需实现不同功能。本文报道了一种可编程声学超表面,它包含一系列可调谐的亚波长单元,以突破这一限制并实现通用的二维波操控功能。该超表面的每个单元由一个直通道和五个并联的亥姆霍兹谐振器组成,其有效质量可通过一个稳健的流体系统进行调谐。穿过每个单元的声波的相位和幅度可被动态且连续地调制。基于这种机制,通过在亚波长尺度上对透射波的相位和幅度进行工程设计,该超表面能够实现通用的波操控功能。通过声场扫描实验,直观地展示了多种波操控功能,包括通过使用一种超表面设计来操纵声波、设计声束以及开启/关闭声能流。这项工作扩展了超表面研究,在包括声学成像、通信、悬浮和镊子等广泛应用中具有巨大潜力。