The study demonstrates the possibility of achieving near-zero propagation of sound waves in acoustic metamaterials based on a membrane-based metamaterial unit cell which exhibits effective mass density of Lorentzian type. The unit cell, which represents the acoustic counterpart of the split ring resonator, was previously used as a building block of left-handed metamaterials, as it exhibits negative density at certain frequencies. In this study we show that its application can be extended to achieving propagation of sound waves at a frequency where its effective density equals zero. This effect can be exploited in a range of applications where extremely low phase variation over long physical distances is required, such as energy tunneling or...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor ...
Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor ...
We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of a on...
We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of a on...
We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of a on...
This Letter studies a two-dimensional, membrane-based acoustic metamaterial with a near-zero refract...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
Originally demonstrated with electromagnetic waves, supercoupling describes the extraordinary matche...
Acoustic metamaterials are artificial materials designed to realize unprecedented properties such as...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
International audienceWe theoretically, numerically, and experimentally analyze the Density-Near-Zer...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor ...
Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor ...
We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of a on...
We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of a on...
We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of a on...
This Letter studies a two-dimensional, membrane-based acoustic metamaterial with a near-zero refract...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
Originally demonstrated with electromagnetic waves, supercoupling describes the extraordinary matche...
Acoustic metamaterials are artificial materials designed to realize unprecedented properties such as...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
International audienceWe theoretically, numerically, and experimentally analyze the Density-Near-Zer...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor ...
Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor ...