Broadband acoustic bend composed of homogeneous curved waveguides in quasi-two-dimensional space

Author:

Liu Chao1ORCID,Zhou Jiaojiao2ORCID,Zhou Yangyang3ORCID,Xu Lin1ORCID,Chen Huanyang4ORCID

Affiliation:

1. Information Materials and Intelligent Sensing Laboratory of Anhui Province and Institutes of Physical Science and Information Technology, Anhui University 1 , Hefei 230601, China

2. Department of Mathematics and Physics, Anhui Jianzhu University 2 , Hefei 230601, China

3. Science and Technology on Reliability Physics and Application of Electronic Component Laboratory, China Electronic Produce Reliability and Environmental Testing Research Institute 3 , Guangzhou 510610, China

4. Department of Physics, Xiamen University 4 , Xiamen 361005, China

Abstract

By exploring equivalent acoustic path length between inhomogeneous medium and homogenous curved geometry, we present a broadband acoustic bend composed of homogeneous curved waveguides in quasi-two-dimensional space. Simultaneous control of the wavefront and phase accumulation of acoustic waves is achieved by designing the embedding geometry of homogeneous curved waveguides with subwavelength ports, guaranteeing both the bending effect and extremely high transmission. Unlike metamaterials-based wave bends, homogeneous curved waveguides, filled with background air, exhibit promising broadband properties. Moreover, we propose a broadband acoustic splitter by mirroring the acoustic bend. Simulation results demonstrate functionalities of our designs.

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

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