Topological protected wave engineering in artificially structured media is at the frontier of ongoing metamaterials research that is inspired by quantum mechanics. Acoustic analogues of electronic topological insulators have recently led to a wealth of new opportunities in manipulating sound propagation with strikingly unconventional acoustic edge modes immune to backscattering. Earlier fabrications of topological insulators are characterized by an unreconfigurable geometry and a very narrow frequency response, which severely hinders the exploration and design of useful devices. Here we establish topologically protected sound in reconfigurable phononic crystals that can be switched on and off simply by rotating its three-legged "atoms" with...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
Topological protected wave engineering in artificially structured media is at the frontier of ongoin...
Topological protected wave engineering in artificially structured media is at the frontier of ongoin...
Topological protected wave engineering in artificially structured media is at the frontier of ongoin...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
Topologically protected wave engineering in artificially structured media resides at the frontier of...
The unique conduction properties of condensed matter systems with topological order have recently in...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
Topological protected wave engineering in artificially structured media is at the frontier of ongoin...
Topological protected wave engineering in artificially structured media is at the frontier of ongoin...
Topological protected wave engineering in artificially structured media is at the frontier of ongoin...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
Topologically protected wave engineering in artificially structured media resides at the frontier of...
The unique conduction properties of condensed matter systems with topological order have recently in...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
International audienceWe systematically engineer a series of square and rectangular phononic crystal...