In this paper, we report a new type of bandgap phenomenon called "amplitude-induced bandgap", which is induced by amplitude in nonlinear metamaterials. Generally, bandgap phenomena in elastic metamaterials or phononic crystals have been achieved by the artificial unit cells which prevent wave propagation with Bragg scattering or internal resonance. However, the amplitude-induced bandgap originates from the amplitude and nonlinearity unlike previously discovered bandgap phenomena. Accordingly, the amplitude-induced bandgap is shown to exhibit various peculiar characteristics that have not been previously observed. Here, an analytic investigation about the amplitude-induced bandgap is conducted based on the perturbation approach in ...
The characteristics of passive responses and fixed band gaps of phononic crystals (PnCs) limit their...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
The propagation of waves in the nonlinear acoustic metamaterials (NAMs) is fundamentally different f...
We propose a new nonlinear elastic metamaterial which shows tunable bandgap at quasi-static frequenc...
Wave propagation characteristics of nonlinear one-dimensional periodic structures are investigated a...
International audienceNonlinear wave limiters transmit low-amplitude waves while blocking high-inten...
We investigate the acoustic band structure of tensegrity mass-spring chains as a function of the app...
Phononic crystals and elastic metamaterials have recently received significant attention due to thei...
Acoustic metamaterial, which can prohibit effectively the elastic wave propagation in the bandgap fr...
Linear acoustic metamaterials (LAMs)are widely used to manipulate sound, but it is challenging to ob...
Nonlinear superlattices exhibit unique features allowing for wave manipulations. Despite the increas...
Recently, to enhance the usability of metamaterials, tunable metamaterials have been great attention...
One-dimensional nonlinear phononic crystals have been assembled from periodic diatomic chains of sta...
In weakly nonlinear systems, the main effect of cubic nonlinearity on wave propagation is an amplitu...
This paper studies the dispersion properties and wave propagation in the tetratomic nonlinear acoust...
The characteristics of passive responses and fixed band gaps of phononic crystals (PnCs) limit their...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
The propagation of waves in the nonlinear acoustic metamaterials (NAMs) is fundamentally different f...
We propose a new nonlinear elastic metamaterial which shows tunable bandgap at quasi-static frequenc...
Wave propagation characteristics of nonlinear one-dimensional periodic structures are investigated a...
International audienceNonlinear wave limiters transmit low-amplitude waves while blocking high-inten...
We investigate the acoustic band structure of tensegrity mass-spring chains as a function of the app...
Phononic crystals and elastic metamaterials have recently received significant attention due to thei...
Acoustic metamaterial, which can prohibit effectively the elastic wave propagation in the bandgap fr...
Linear acoustic metamaterials (LAMs)are widely used to manipulate sound, but it is challenging to ob...
Nonlinear superlattices exhibit unique features allowing for wave manipulations. Despite the increas...
Recently, to enhance the usability of metamaterials, tunable metamaterials have been great attention...
One-dimensional nonlinear phononic crystals have been assembled from periodic diatomic chains of sta...
In weakly nonlinear systems, the main effect of cubic nonlinearity on wave propagation is an amplitu...
This paper studies the dispersion properties and wave propagation in the tetratomic nonlinear acoust...
The characteristics of passive responses and fixed band gaps of phononic crystals (PnCs) limit their...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
The propagation of waves in the nonlinear acoustic metamaterials (NAMs) is fundamentally different f...