Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure

Cell photoacoustic detection of acoustic signals has serious problems of transmission loss and difficulty in acquisition. Based on the acoustic transmission characteristics of acoustic supermaterials, the acoustic wave directional transmission model is designed using COMSOL software, and a finite el...

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Main Authors: Jianning Han, Peng Yang, Jing-zhi Wu, Tao Wang, Jing Wang
Format: Article
Language:English
Published: AIP Publishing LLC 2019-12-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5124555
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spelling doaj-cbcc526274b64724b19954e28d7630a42020-11-25T03:22:50ZengAIP Publishing LLCAIP Advances2158-32262019-12-01912125209125209-910.1063/1.5124555Directional transmission of ultra-high frequency acoustic signals based on metamaterial structureJianning Han0Peng Yang1Jing-zhi Wu2Tao Wang3Jing Wang4Shanxi Provincial Key Laboratory for Biomedical Imaging and Big Data, North University of China, No. 3 Xueyuan Road, Taiyuan 030051, ChinaShanxi Provincial Key Laboratory for Biomedical Imaging and Big Data, North University of China, No. 3 Xueyuan Road, Taiyuan 030051, ChinaShanxi Provincial Key Laboratory for Biomedical Imaging and Big Data, North University of China, No. 3 Xueyuan Road, Taiyuan 030051, ChinaDepartment of Internal Medicine, University of South Florida, Tampa, Florida 33612, USAElectrical Engineering Department, University of South Florida, Tampa, Florida 33612, USACell photoacoustic detection of acoustic signals has serious problems of transmission loss and difficulty in acquisition. Based on the acoustic transmission characteristics of acoustic supermaterials, the acoustic wave directional transmission model is designed using COMSOL software, and a finite element simulation experiment was carried out. Experiments show that the model designed in this paper has good sound wave focusing and acoustic wave directional transmission effects. According to the specific application in different environments, this paper designs a variety of transmission models with different structures and carries out comparative experiments to verify the influence of complex model structures on the directional transmission of sound waves. At the same time, the experimental analysis of the acoustic wave directional transmission effect of the model under different frequency segments is carried out, and the possibility of acoustic wave logic operation is verified. Models can be applied to high frequency acoustic signal acquisition and sound wave transmission in complex environments. These studies have important significance for the development of cell photoacoustic detection technology and the application of metamaterial structures and have good practical merit.http://dx.doi.org/10.1063/1.5124555
collection DOAJ
language English
format Article
sources DOAJ
author Jianning Han
Peng Yang
Jing-zhi Wu
Tao Wang
Jing Wang
spellingShingle Jianning Han
Peng Yang
Jing-zhi Wu
Tao Wang
Jing Wang
Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
AIP Advances
author_facet Jianning Han
Peng Yang
Jing-zhi Wu
Tao Wang
Jing Wang
author_sort Jianning Han
title Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
title_short Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
title_full Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
title_fullStr Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
title_full_unstemmed Directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
title_sort directional transmission of ultra-high frequency acoustic signals based on metamaterial structure
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2019-12-01
description Cell photoacoustic detection of acoustic signals has serious problems of transmission loss and difficulty in acquisition. Based on the acoustic transmission characteristics of acoustic supermaterials, the acoustic wave directional transmission model is designed using COMSOL software, and a finite element simulation experiment was carried out. Experiments show that the model designed in this paper has good sound wave focusing and acoustic wave directional transmission effects. According to the specific application in different environments, this paper designs a variety of transmission models with different structures and carries out comparative experiments to verify the influence of complex model structures on the directional transmission of sound waves. At the same time, the experimental analysis of the acoustic wave directional transmission effect of the model under different frequency segments is carried out, and the possibility of acoustic wave logic operation is verified. Models can be applied to high frequency acoustic signal acquisition and sound wave transmission in complex environments. These studies have important significance for the development of cell photoacoustic detection technology and the application of metamaterial structures and have good practical merit.
url http://dx.doi.org/10.1063/1.5124555
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AT pengyang directionaltransmissionofultrahighfrequencyacousticsignalsbasedonmetamaterialstructure
AT jingzhiwu directionaltransmissionofultrahighfrequencyacousticsignalsbasedonmetamaterialstructure
AT taowang directionaltransmissionofultrahighfrequencyacousticsignalsbasedonmetamaterialstructure
AT jingwang directionaltransmissionofultrahighfrequencyacousticsignalsbasedonmetamaterialstructure
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