We report the finding of the analogous valley Hall effect in phononic systems arising from mirror symmetry breaking, in addition to spatial inversion symmetry breaking. We study topological phases of plates and spring-mass models in kagome and modified kagome arrangements. By breaking the inversion symmetry it is well known that a defined valley Chern number arises. We also show that effectively, breaking the mirror symmetry leads to the same topological invariant. Based on the bulk-edge correspondence principle, protected edge states appear at interfaces between two lattices with different valley Chern numbers. By means of a plane wave expansion method and the multiple scattering theory for periodic and finite systems, respectively, ...
We theoretically study the topological properties of the tight-binding model on the breathing kagome...
We study the phases of a spin system on the kagome lattice with nearest-neighbor XXZ interactions wi...
The research interest on phononic crystals now takes a new turn towards the acoustic/elastic analogi...
We report the finding of the analogous valley Hall effect in phononic systems arising from mirror sy...
International audienceIn this work we propose a topological valley phononic crystal plate and we ext...
The study for exotic topological effects of sound has attracted uprising interests in fundamental ph...
In this paper, we report the evidence of topologically protected edge waves (TPEWs) in continuum Kag...
International audienceWe investigate a new mechanism for phase transitions between topological magno...
Topological phases of matter, sound, light, and vibrations have enabled brand new routes to direct a...
We study the non-trivial phase of the two-dimensional breathing kagome lattice, displaying both edge...
Recent experiments on kagome metals AV$_3$Sb$_5$ (A=K,Rb,Cs) [M. Kang et al., Nat. Phys. 18, 301-308...
In this paper, we study wave propagation in elastic plates incorporating honeycomb arrays of rigid p...
In this paper, we study wave propagation in elastic plates incorporating honeycomb arrays of rigid p...
We theoretically study the topological properties of the tight-binding model on the breathing kagome...
We study the phases of a spin system on the kagome lattice with nearest-neighbor XXZ interactions wi...
The research interest on phononic crystals now takes a new turn towards the acoustic/elastic analogi...
We report the finding of the analogous valley Hall effect in phononic systems arising from mirror sy...
International audienceIn this work we propose a topological valley phononic crystal plate and we ext...
The study for exotic topological effects of sound has attracted uprising interests in fundamental ph...
In this paper, we report the evidence of topologically protected edge waves (TPEWs) in continuum Kag...
International audienceWe investigate a new mechanism for phase transitions between topological magno...
Topological phases of matter, sound, light, and vibrations have enabled brand new routes to direct a...
We study the non-trivial phase of the two-dimensional breathing kagome lattice, displaying both edge...
Recent experiments on kagome metals AV$_3$Sb$_5$ (A=K,Rb,Cs) [M. Kang et al., Nat. Phys. 18, 301-308...
In this paper, we study wave propagation in elastic plates incorporating honeycomb arrays of rigid p...
In this paper, we study wave propagation in elastic plates incorporating honeycomb arrays of rigid p...
We theoretically study the topological properties of the tight-binding model on the breathing kagome...
We study the phases of a spin system on the kagome lattice with nearest-neighbor XXZ interactions wi...
The research interest on phononic crystals now takes a new turn towards the acoustic/elastic analogi...