In metamaterial science, local resonance and hybridization are key phenomena strongly influencing the dispersion properties; the metasurface discussed in this article created by a cluster of resonators, subwavelength rods, atop an elastic surface being an exemplar with these features. On this metasurface, band-gaps, slow or fast waves, negative refraction, and dynamic anisotropy can all be observed by exploring frequencies and wavenumbers from the Floquet–Bloch problem and by using the Brillouin zone. These extreme characteristics, when appropriately engineered, can be used to design and control the propagation of elastic waves along the metasurface. For the exemplar we consider, two parameters are easily tuned: rod height and cluster perio...
Elastic metamaterials comprise a broad class of artificially engineered media designed to control t...
The topics deliberated in this dissertation are ingrained in the idea of controlling wave transmissi...
We consider a periodic array of resonators, formed from Euler–Bernoulli beams, attached to the surfa...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...
In elastic wave systems, combining the powerful concepts of resonance and spatial grading within str...
The dispersion curves of a cluster of closely spaced rods supported by a thin plate are characterise...
In this presentation, we show recent results obtained by our research group on two types of elastic ...
Since their emergence, locally resonant metamaterials have found several applications for the contro...
Elastic metamaterials made of locally resonant arrays have been developed as effective ways to creat...
Elastic metasurfaces are thin interfaces composed of locally resonant structures placed at the free ...
Elastic waves guided along surfaces dominate applications in geophysics, ultrasonic inspection, mech...
This thesis discusses how wave propagation in continuous linearly elastic media can be controlled or...
Artificially structured composite materials have the ability to manipulate the propagation of elasti...
Periodic and locally resonant materials, also referred as metamaterials, provide unique opportunitie...
International audienceWe consider the canonical problem of an array of rods, which act as resonators...
Elastic metamaterials comprise a broad class of artificially engineered media designed to control t...
The topics deliberated in this dissertation are ingrained in the idea of controlling wave transmissi...
We consider a periodic array of resonators, formed from Euler–Bernoulli beams, attached to the surfa...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...
In elastic wave systems, combining the powerful concepts of resonance and spatial grading within str...
The dispersion curves of a cluster of closely spaced rods supported by a thin plate are characterise...
In this presentation, we show recent results obtained by our research group on two types of elastic ...
Since their emergence, locally resonant metamaterials have found several applications for the contro...
Elastic metamaterials made of locally resonant arrays have been developed as effective ways to creat...
Elastic metasurfaces are thin interfaces composed of locally resonant structures placed at the free ...
Elastic waves guided along surfaces dominate applications in geophysics, ultrasonic inspection, mech...
This thesis discusses how wave propagation in continuous linearly elastic media can be controlled or...
Artificially structured composite materials have the ability to manipulate the propagation of elasti...
Periodic and locally resonant materials, also referred as metamaterials, provide unique opportunitie...
International audienceWe consider the canonical problem of an array of rods, which act as resonators...
Elastic metamaterials comprise a broad class of artificially engineered media designed to control t...
The topics deliberated in this dissertation are ingrained in the idea of controlling wave transmissi...
We consider a periodic array of resonators, formed from Euler–Bernoulli beams, attached to the surfa...