International audienceWe present in this paper a theoretical and numerical analysis of bending waves localized on the boundary of a platonic crystal whose building blocks are Split Ring Resonators (SRR). We first derive the homogenized parameters of the structured plate using a three-scale asymptotic expansion in the linearized biharmonic equation. In the limit when the wavelength of the bending wave is much larger than the typical heterogeneity size of the platonic crystal, we show that it behaves as an artificial plate with an anisotropic effective Young modulus and a dispersive effective mass density. We then analyze dispersion diagrams associated with bending waves propagating within an infinite array of SRR, for which eigen-solutions a...
Platonic crystals (PlCs) are the elastic plate analogue of the photonic crystals widely used in opti...
Abstract — The problem of developing negative µ and negative refraction (NRI) 3D isotropic split rin...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...
We present in this paper a theoretical and numerical analysis of bending waves localized on the boun...
International audienceWe present a theoretical and numerical analysis of liquid surface waves _LSWs_...
We propose a design of a periodically perforated thin plate leading to omni-directivity and confinem...
We consider the problem of Gaussian beam scattering by finite arrays of pinned points, or platonic c...
We propose a new type of platonic crystal, which includes spiral resonators with low- frequency reso...
We address the problem of scattering and transmission of a plane flexural wave through a semi-infini...
International audienceWe propose a design of a periodically perforated thin plate leading to lensing...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual a...
We obtain band diagrams for a two-dimensional periodic structure consisting of an infinite square ar...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
[EN] A multiple scattering theory is applied to study the properties of flexural waves propagating i...
Platonic crystals (PlCs) are the elastic plate analogue of the photonic crystals widely used in opti...
Abstract — The problem of developing negative µ and negative refraction (NRI) 3D isotropic split rin...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...
We present in this paper a theoretical and numerical analysis of bending waves localized on the boun...
International audienceWe present a theoretical and numerical analysis of liquid surface waves _LSWs_...
We propose a design of a periodically perforated thin plate leading to omni-directivity and confinem...
We consider the problem of Gaussian beam scattering by finite arrays of pinned points, or platonic c...
We propose a new type of platonic crystal, which includes spiral resonators with low- frequency reso...
We address the problem of scattering and transmission of a plane flexural wave through a semi-infini...
International audienceWe propose a design of a periodically perforated thin plate leading to lensing...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual a...
We obtain band diagrams for a two-dimensional periodic structure consisting of an infinite square ar...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
[EN] A multiple scattering theory is applied to study the properties of flexural waves propagating i...
Platonic crystals (PlCs) are the elastic plate analogue of the photonic crystals widely used in opti...
Abstract — The problem of developing negative µ and negative refraction (NRI) 3D isotropic split rin...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...