We propose and demonstrate experimentally a novel type of nonlinearity in metamaterials, which is induced by mechanical deformation of the structure. The nonlinearity arises from the introduction of an extra degree of freedom in the metamaterial, which allows for elastic displacement of the strongly interacting structural elements (see Fig. 1a). This type of nonlinearity relies on the counterplay between the electromagnetic attraction and the elastic repulsion, and the induced deformation alters the electromagnetic response of the entire structure, leading to the novel nonlinear response of the metamaterial. © 2011 IEEE
We review the recent experimental results from our Nonlinear Physics Center on tunability and nonlin...
Within a decade of fruitful development, metamaterials became a prominent area of research, bridging...
Metamaterials are engineered structures designed to exhibit exotic electromagnetic properties. Early...
We propose and demonstrate experimentally a novel type of nonlinearity in metamaterials, which is in...
The study of advanced artificial electromagnetic materials, known as metamaterials, provides a link ...
The study of advanced artificial electromagnetic materials, known as metamaterials, provides a link ...
We review our recent achievements in the development of metamaterials with mechanical nonlinearity. ...
Magneto-elastic metamaterials is a conceptually new class of metamaterials that utilizes both electr...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
We propose and experimentally verify a way to achieve strong nonlinear coupling between the electrom...
We propose and experimentally verify a way to achieve strong nonlinear coupling between the electrom...
We investigate nonlinear behavior of metamaterial element, where responses of a different nature are...
Mechanical metamaterials are periodic lattice structures with complex unit cell architectures that c...
We propose a magnetic field-induced asymmetric mechanical metamaterial. The tunable metamaterial int...
We review the recent experimental results from our Nonlinear Physics Center on tunability and nonlin...
Within a decade of fruitful development, metamaterials became a prominent area of research, bridging...
Metamaterials are engineered structures designed to exhibit exotic electromagnetic properties. Early...
We propose and demonstrate experimentally a novel type of nonlinearity in metamaterials, which is in...
The study of advanced artificial electromagnetic materials, known as metamaterials, provides a link ...
The study of advanced artificial electromagnetic materials, known as metamaterials, provides a link ...
We review our recent achievements in the development of metamaterials with mechanical nonlinearity. ...
Magneto-elastic metamaterials is a conceptually new class of metamaterials that utilizes both electr...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
We propose and experimentally verify a way to achieve strong nonlinear coupling between the electrom...
We propose and experimentally verify a way to achieve strong nonlinear coupling between the electrom...
We investigate nonlinear behavior of metamaterial element, where responses of a different nature are...
Mechanical metamaterials are periodic lattice structures with complex unit cell architectures that c...
We propose a magnetic field-induced asymmetric mechanical metamaterial. The tunable metamaterial int...
We review the recent experimental results from our Nonlinear Physics Center on tunability and nonlin...
Within a decade of fruitful development, metamaterials became a prominent area of research, bridging...
Metamaterials are engineered structures designed to exhibit exotic electromagnetic properties. Early...