We describe an acoustic impedance matching method that permits perfect sound transmission between waveguides of different impedances as set by their cross sectional areas. Impedance matching in this case is based on extraordinary acoustic transmission mediated via a Helmholtz resonator embedded at the junction between the dissimilar waveguides. Perfect transmission occurs at the Helmholtz resonance frequency. However, perfect transmission between different impedance waveguides requires that the two-neck Helmholtz resonator be asymmetric with different areas and lengths of the necks that couple to each waveguide
Abstract Helmholtz resonators offer an ideal platform for advanced sound absorbers, but their utilit...
A new analytical model is proposed to calculate the resonance frequency and the input impedance of a...
In this work, we use the finite element method to study the acoustic properties of single and couple...
This paper examines the existence of a localized mode of sound in a planar waveguide between two par...
The theory of sound propagation in waveguides with a system of resonators on the wall is given in [1...
Non-Hermitian systems can exhibit exceptional points (EPs) at which modes coalesce. The connection b...
In this study, different load matching techniques are analysed to identify the optimum method to del...
When an elastic wave travels through an elastic joint connecting two different waveguides, some of t...
International audienceWe investigate longitudinal near-field coupling between acoustic resonators gr...
[EN] Perfect, broadband and asymmetric sound absorption is theoretically, numerically and experiment...
The transmission property of acoustic wave in a waveguide composed of index-near-zero (INZ) and reci...
International patent: WO 91/18486. A device for matching acoustic impedance between an ultrasonic tr...
Broadband impedance matching and zero reflection of acoustic waves at a planar interface between two...
Innovative meta-materials offer great flexibility for manipulating sound waves and assure unpreceden...
This contribution presents the acoustical properties and corresponding theoretical descriptions of a...
Abstract Helmholtz resonators offer an ideal platform for advanced sound absorbers, but their utilit...
A new analytical model is proposed to calculate the resonance frequency and the input impedance of a...
In this work, we use the finite element method to study the acoustic properties of single and couple...
This paper examines the existence of a localized mode of sound in a planar waveguide between two par...
The theory of sound propagation in waveguides with a system of resonators on the wall is given in [1...
Non-Hermitian systems can exhibit exceptional points (EPs) at which modes coalesce. The connection b...
In this study, different load matching techniques are analysed to identify the optimum method to del...
When an elastic wave travels through an elastic joint connecting two different waveguides, some of t...
International audienceWe investigate longitudinal near-field coupling between acoustic resonators gr...
[EN] Perfect, broadband and asymmetric sound absorption is theoretically, numerically and experiment...
The transmission property of acoustic wave in a waveguide composed of index-near-zero (INZ) and reci...
International patent: WO 91/18486. A device for matching acoustic impedance between an ultrasonic tr...
Broadband impedance matching and zero reflection of acoustic waves at a planar interface between two...
Innovative meta-materials offer great flexibility for manipulating sound waves and assure unpreceden...
This contribution presents the acoustical properties and corresponding theoretical descriptions of a...
Abstract Helmholtz resonators offer an ideal platform for advanced sound absorbers, but their utilit...
A new analytical model is proposed to calculate the resonance frequency and the input impedance of a...
In this work, we use the finite element method to study the acoustic properties of single and couple...