TY - JOUR
T1 - An acoustic compound eye for omnidirectional broadband signal enhancement
AU - Zhang, Hao
AU - Wang, Linbo
AU - Du, Pengyu
AU - Yang, Zhibo
AU - Ma, Fuyin
N1 - Publisher Copyright:
© 2024
PY - 2024/6/15
Y1 - 2024/6/15
N2 - We propose an acoustic compound eye based on a three-dimensional meta-sphere, which can achieve omnidirectional broadband acoustic signal enhancement. Imitating the insect compound eye system, a meta-spherical array of subwavelength planar metasurfaces with multiple gradient refractive indices is formed in space. The meta-spherical compound eye has multi-direction focusing and free-field anti-interference capabilities, which can focus and "inhale" the acoustic signals from different incident directions into the space surrounded by the lens array. The compound eye array size can control the frequency band of interference reduction. At the same time, the parameters of each "sub-eye lens" are consistent, and there is no obvious phase difference between the signals in each direction. In this way, the incoming and focused signals from different "sub-eye lenses" can be further converged and enhanced over a broadband frequency. The bionic structure of the compound eye extends the previous metalens design from two-dimensional unidirectional planar-lens focusing to three-dimensional omnidirectional meta-sphere focusing. While maintaining the subwavelength thickness of the metasurface, the structure can get rid of the dependence of the metasurface on the space and incident direction, which has a wide range of engineering applications.
AB - We propose an acoustic compound eye based on a three-dimensional meta-sphere, which can achieve omnidirectional broadband acoustic signal enhancement. Imitating the insect compound eye system, a meta-spherical array of subwavelength planar metasurfaces with multiple gradient refractive indices is formed in space. The meta-spherical compound eye has multi-direction focusing and free-field anti-interference capabilities, which can focus and "inhale" the acoustic signals from different incident directions into the space surrounded by the lens array. The compound eye array size can control the frequency band of interference reduction. At the same time, the parameters of each "sub-eye lens" are consistent, and there is no obvious phase difference between the signals in each direction. In this way, the incoming and focused signals from different "sub-eye lenses" can be further converged and enhanced over a broadband frequency. The bionic structure of the compound eye extends the previous metalens design from two-dimensional unidirectional planar-lens focusing to three-dimensional omnidirectional meta-sphere focusing. While maintaining the subwavelength thickness of the metasurface, the structure can get rid of the dependence of the metasurface on the space and incident direction, which has a wide range of engineering applications.
KW - Acoustic compound eye
KW - Acoustic concentrator
KW - Acoustic meta-sphere
KW - Acoustic metasurface
KW - Broadband enhancement
UR - https://www.scopus.com/pages/publications/85186756946
U2 - 10.1016/j.ijmecsci.2024.109164
DO - 10.1016/j.ijmecsci.2024.109164
M3 - 文章
AN - SCOPUS:85186756946
SN - 0020-7403
VL - 272
JO - International Journal of Mechanical Sciences
JF - International Journal of Mechanical Sciences
M1 - 109164
ER -