Many efforts have been devoted to studying the robustness of topologically protected edge states in acoustics; however, the robustness of conventional edge states is rarely reported. In this work we theoretically study interface acoustic states appearing in finite arrays of resonators on a thin plate with topologically protected and conventional designs. Topologically protected interface states are first analyzed by employing the concept of breaking inversion symmetry within the unit cell of a honeycomb lattice for cylindrical and spherical resonators; we further demonstrate the robustness of the wave propagation along a zigzag path containing sharp corners and defects. In parallel, a conventional interface state is also designed and ...
In this paper, we report the evidence of topologically protected edge waves (TPEWs) in continuum Kag...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
Many efforts have been devoted to studying the robustness of topologically protected edge states in ...
In recent years, the advances in topological insulator in the fields of condensed matter have been ...
Guiding phononic waves with low loss is attractive from both scientific and technological points of ...
Based on the concept of band topology in phonon dispersion, we designed a topological phononic cryst...
International audienceIn this work we propose a topological valley phononic crystal plate and we ext...
Recently, the study of topological phase transitions and edge states for acoustic wave systems has b...
Recent advances in designing time-reversal-invariant photonic topological insulators have been exten...
A topological state with protected propagation of elastic waves is achieved by appropriately enginee...
We derive analytical solutions based on singular Green's functions, which enable efficient computati...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceThe topological backscattering immunity of waves guided along a domain wall is...
In this paper, we report the evidence of topologically protected edge waves (TPEWs) in continuum Kag...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...
Many efforts have been devoted to studying the robustness of topologically protected edge states in ...
In recent years, the advances in topological insulator in the fields of condensed matter have been ...
Guiding phononic waves with low loss is attractive from both scientific and technological points of ...
Based on the concept of band topology in phonon dispersion, we designed a topological phononic cryst...
International audienceIn this work we propose a topological valley phononic crystal plate and we ext...
Recently, the study of topological phase transitions and edge states for acoustic wave systems has b...
Recent advances in designing time-reversal-invariant photonic topological insulators have been exten...
A topological state with protected propagation of elastic waves is achieved by appropriately enginee...
We derive analytical solutions based on singular Green's functions, which enable efficient computati...
We systematically engineer a series of square and rectangular phononic crystals to create experiment...
International audienceThe topological backscattering immunity of waves guided along a domain wall is...
In this paper, we report the evidence of topologically protected edge waves (TPEWs) in continuum Kag...
Topological insulators, which allow edge or interface waves but forbid bulk waves, have revolutioniz...
International audienceWe use square and rectangular phononic crystals to create experimental realiza...