A Dirac-like cone is formed by utilizing the flat bands associated with localized modes in an acoustic crystal (AC) composed of a square array of core-shell-structure cylinders in a water host. Although the triply-degeneracy seems to arise from two almost-overlapping flat bands touching another curved band, the enlarged view of the band structure around the degenerate point reveals that there are actually two linear bands intersecting each other at the Brillouin zone center, with another flat band passing through the same crossing point. The linearity of dispersion relations is achieved by tuning the geometrical parameters of the cylindrical scatterers. A perturbation method is used to not only accurately predict the linear slopes of the di...
In this paper, we compute the band structure for a pinned elastic plate which is constrained at the ...
We demonstrate the presence of Dirac cones in the dispersion relation of acoustic waves propagating ...
Double-zero-index properties of electromagnetic and acoustic waveguides have been recently realized ...
We show that two-dimensional acoustic crystals (ACs) can be designed to exhibit Dirac cone dispersio...
We show that by applying accidental degeneracy, we can obtain a triply-degenerate state at the zone ...
We theoretically construct a rectangular phononic crystal (PC) structure surrounded by water with C-...
We theoretically construct a rectangular phononic crystal (PC) structure surrounded by water with C-...
We theoretically construct a rectangular phononic crystal (PC) structure surrounded by water with C-...
A zero-refractive-index metamaterial is one in which waves do not experience any spatial phase chang...
New scientific investigations of artificially structured materials and experiments have exhibit wave...
Simultaneous occurrence of Dirac-like cones at the center of the Brillouin zone (Γ) at two different...
Zero index materials where sound propagates without phase variation, holds a great potential for wav...
International audienceZero index materials where sound propagates without phase variation, holds a g...
We show how one may obtain conical (Dirac) dispersions in photonic crystals, and in some cases, such...
Acoustic tunneling is an essential property for phononic crystals in a Dirac-cone state. By analyzin...
In this paper, we compute the band structure for a pinned elastic plate which is constrained at the ...
We demonstrate the presence of Dirac cones in the dispersion relation of acoustic waves propagating ...
Double-zero-index properties of electromagnetic and acoustic waveguides have been recently realized ...
We show that two-dimensional acoustic crystals (ACs) can be designed to exhibit Dirac cone dispersio...
We show that by applying accidental degeneracy, we can obtain a triply-degenerate state at the zone ...
We theoretically construct a rectangular phononic crystal (PC) structure surrounded by water with C-...
We theoretically construct a rectangular phononic crystal (PC) structure surrounded by water with C-...
We theoretically construct a rectangular phononic crystal (PC) structure surrounded by water with C-...
A zero-refractive-index metamaterial is one in which waves do not experience any spatial phase chang...
New scientific investigations of artificially structured materials and experiments have exhibit wave...
Simultaneous occurrence of Dirac-like cones at the center of the Brillouin zone (Γ) at two different...
Zero index materials where sound propagates without phase variation, holds a great potential for wav...
International audienceZero index materials where sound propagates without phase variation, holds a g...
We show how one may obtain conical (Dirac) dispersions in photonic crystals, and in some cases, such...
Acoustic tunneling is an essential property for phononic crystals in a Dirac-cone state. By analyzin...
In this paper, we compute the band structure for a pinned elastic plate which is constrained at the ...
We demonstrate the presence of Dirac cones in the dispersion relation of acoustic waves propagating ...
Double-zero-index properties of electromagnetic and acoustic waveguides have been recently realized ...