Non-reciprocal acoustics in a viscous environment

Author:

Heo Hyeonu1,Walker Ezekiel2,Zubov Yurii1,Shymkiv Dmitrii1,Wages Dylan3,Krokhin Arkadii1ORCID,Choi Tae-Youl3,Neogi Arup1

Affiliation:

1. Department of Physics, University of North Texas, PO Box 311427, Denton, TX 76203, USA

2. Echonovus Inc., 1800 South Loop 288 STE 396 #234, Denton, TX 76205, USA

3. Department of Mechanical Engineering, University of North Texas, 3940 North Elm Suite F101, Denton, TX 76207, USA

Abstract

It is demonstrated that acoustic transmission through a phononic crystal with anisotropic solid scatterers becomes non-reciprocal if the background fluid is viscous. In an ideal (inviscid) fluid, the transmission along the direction of broken P symmetry is asymmetric. This asymmetry is compatible with reciprocity since time-reversal symmetry ( T symmetry) holds. Viscous losses break T symmetry, adding a non-reciprocal contribution to the transmission coefficient. The non-reciprocal transmission spectra for a phononic crystal of metallic circular cylinders in water are experimentally obtained and analysed. The surfaces of the cylinders were specially processed in order to weakly break P symmetry and increase viscous losses through manipulation of surface features. Subsequently, the non-reciprocal part of transmission is separated from its asymmetric reciprocal part in numerically simulated transmission spectra. The level of non-reciprocity is in agreement with the measure of broken P symmetry. The reported study contradicts commonly accepted opinion that linear dissipation cannot be a reason leading to non-reciprocity. It also opens a way for engineering passive acoustic diodes exploring the natural viscosity of any fluid as a factor leading to non-reciprocity.

Funder

National Science Foundation

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference46 articles.

1. On the application of the principle of reciprocity to acoustics;Strutt (Rayleigh) JW;Proc. R. Soc.,1876

2. Das Gesetz des Tiefempfangs in der Akustik und Elektroakustik

3. A General Theory of Passive Linear Electroacoustic Transducers and the Electroacoustic Reciprocity Theorem. I

4. A question in connection with the principle of reciprocity in acoustics;Laymshev LM;Sov. Phys. Doklady,1959

5. General Reciprocity Relation

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