This Letter studies a two-dimensional, membrane-based acoustic metamaterial with a near-zero refractive index. It yields a frequency-dependent effective density that is near-zero at a narrow frequency band centered around its first resonant frequency. This effective density results in its near-zero refractive index. Numerical simulations are shown which demonstrate that the phase in this metamaterial undergoes small changes, and the metamaterial functions as an angular filter such that only a wave with a near-zero incident angle can transmit. Its ability to tailor acoustic phase pattern is also discussed in this Letter
Resonant-base membrane-type acoustic metamaterials (MAMs) are investigated with experiments and simu...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
Microstructured materials are used in material science and engineering to attain desired material pr...
The study demonstrates the possibility of achieving near-zero propagation of sound waves in acoustic...
Acoustic metamaterials are artificial materials designed to realize unprecedented properties such as...
International audienceWe theoretically, numerically, and experimentally analyze the Density-Near-Zer...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
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...
© 2019 The Authors Acoustic metamaterials (AMs) are artificially engineered composite materials, str...
Anisotropic zero-mass acoustic metamaterials are able to transmit evanescent waves without decaying ...
Artificially structured materials with unit cells at sub-wavelength scale, known as metamaterials, h...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
Resonant-base membrane-type acoustic metamaterials (MAMs) are investigated with experiments and simu...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
Microstructured materials are used in material science and engineering to attain desired material pr...
The study demonstrates the possibility of achieving near-zero propagation of sound waves in acoustic...
Acoustic metamaterials are artificial materials designed to realize unprecedented properties such as...
International audienceWe theoretically, numerically, and experimentally analyze the Density-Near-Zer...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
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...
© 2019 The Authors Acoustic metamaterials (AMs) are artificially engineered composite materials, str...
Anisotropic zero-mass acoustic metamaterials are able to transmit evanescent waves without decaying ...
Artificially structured materials with unit cells at sub-wavelength scale, known as metamaterials, h...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
International audienceWe report experimental results of near-zero mass density involving an acoustic...
Resonant-base membrane-type acoustic metamaterials (MAMs) are investigated with experiments and simu...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
Microstructured materials are used in material science and engineering to attain desired material pr...