Funneling acoustic waves through largely mismatched channels is of fundamental importance to tailor and transmit sound for a variety of applications. In electromagnetics, zero-permittivity metamaterials have been used to enhance the coupling of energy in and out of ultranarrow channels, based on a phenomenon known as supercoupling. These metamaterial channels can support total transmission and complete phase uniformity, independent of the channel length, despite being geometrically mismatched with their input and output ports. In the field of acoustics, this phenomenon is challenging to achieve, since it requires zero-density metamaterials, typically realized with waveguides periodically loaded with membranes or resonators. Compared to elec...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
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 ...
Originally demonstrated with electromagnetic waves, supercoupling describes the extraordinary matche...
Supercoupling is a widely-researched topic in wave engineering, which has been used to build couplin...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
Supercoupling is a widely researched topic in wave engineering, which has been used to build couplin...
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...
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...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
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 ...
Originally demonstrated with electromagnetic waves, supercoupling describes the extraordinary matche...
Supercoupling is a widely-researched topic in wave engineering, which has been used to build couplin...
Recent theoretical and experimental work has demonstrated that acoustic wave tunneling and energy sq...
Supercoupling is a widely researched topic in wave engineering, which has been used to build couplin...
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...
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...
[EN] We theoretically, numerically, and experimentally analyze the Density-Near-Zero (DNZ) regime of...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
International audienceWe report experimental results of near-zero mass density involving an acoustic...