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基于局部非线性的声波深亚衍射控制

Local-Nonlinearity-Enabled Deep Subdiffraction Control of Acoustic Waves.

作者信息

Zhong Jiaxin, Hu Chengbo, Wang Kangkang, Ji Jun, Zhuang Tao, Zou Haishan, Lu Jing, Heo Hyeonu, Liang Bin, Jing Yun, Cheng Jian-Chun

机构信息

Key Laboratory of Modern Acoustics and Institute of Acoustics, Nanjing University, Nanjing 210093, China.

Graduate Program in Acoustics, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Phys Rev Lett. 2023 Dec 8;131(23):234001. doi: 10.1103/PhysRevLett.131.234001.

Abstract

Diffraction sets a natural limit for the spatial resolution of acoustic wave fields, hindering the generation and recording of object details and manipulation of sound at subwavelength scales. We propose to overcome this physical limit by utilizing nonlinear acoustics. Our findings indicate that, contrary to the commonly utilized cumulative nonlinear effect, it is in fact the local nonlinear effect that is crucial in achieving subdiffraction control of acoustic waves. We theoretically and experimentally demonstrate a deep subwavelength spatial resolution up to λ/38 in the far field at a distance 4.4 times the Rayleigh distance. This Letter represents a new avenue towards deep subdiffraction control of sound, and may have far-reaching impacts on various applications such as acoustic holograms, imaging, communication, and sound zone control.

摘要

衍射为声波场的空间分辨率设定了自然极限,阻碍了亚波长尺度下物体细节的生成、记录以及声音的操控。我们提议利用非线性声学来克服这一物理极限。我们的研究结果表明,与常用的累积非线性效应相反,实际上在实现声波的亚衍射控制中起关键作用的是局部非线性效应。我们在理论和实验上都证明了在远场中,距离为瑞利距离的4.4倍处可实现高达λ/38的深亚波长空间分辨率。这封信代表了实现声音深亚衍射控制的一条新途径,可能会对诸如声全息图、成像、通信和声区控制等各种应用产生深远影响。

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