A new approach to the implementation of electromagnetic metamaterials with tunable nonlinearity in the microwave range has been proposed. The characteristics of a split ring resonator equipped with a varactor diode to ensure a nonlinear response and a photodiode to supply a dc bias voltage depending on the illumination intensity have been examined. It has been shown that an increase in the illumination intensity shifts the resonance response toward lower frequency and an increase in the power of the exciting signal shifts the resonance response toward higher frequency
A frequency tunable resonator topology is proposed that consists of an S-shaped resonator, a ground ...
Nonlinear active metamaterial surfaces are constructed of planar periodic engineered structures in t...
In this brief, we designed, constructed, and analyzed a frequency-tunable metamaterial resonator. Th...
We report our recent achievements in tuning metamaterials with light. We introduce a novel approach ...
We report our recent achievements in tuning metamaterials with light. We introduce a novel approach ...
A novel approach to design metamaterials with competing nonlinear response is reported. As meta-atom...
We report a novel approach to design metamaterials with sign-varying nonlinear response. The metamat...
We review the recent experimental results from our Nonlinear Physics Center on tunability and nonlin...
We suggest an approach for creating metamaterials with sign-varying nonlinear response. We demonstra...
We propose and design a new type of nonlinear metamaterials exhibiting a resonant electric response...
Metamaterials are artificial structures, which periodically arranged to exhibit fascinating elec...
Metamaterials are artificial structures, which periodically arranged to exhibit fascinating elec...
We report a novel approach to design metamaterials with sign-varying nonlinear response. The metamat...
We study experimentally the dynamic tunability and self-induced nonlinearity of split-ring resonato...
This Thesis is devoted to theoretical investigation of the effective magnetic properties of nonlinea...
A frequency tunable resonator topology is proposed that consists of an S-shaped resonator, a ground ...
Nonlinear active metamaterial surfaces are constructed of planar periodic engineered structures in t...
In this brief, we designed, constructed, and analyzed a frequency-tunable metamaterial resonator. Th...
We report our recent achievements in tuning metamaterials with light. We introduce a novel approach ...
We report our recent achievements in tuning metamaterials with light. We introduce a novel approach ...
A novel approach to design metamaterials with competing nonlinear response is reported. As meta-atom...
We report a novel approach to design metamaterials with sign-varying nonlinear response. The metamat...
We review the recent experimental results from our Nonlinear Physics Center on tunability and nonlin...
We suggest an approach for creating metamaterials with sign-varying nonlinear response. We demonstra...
We propose and design a new type of nonlinear metamaterials exhibiting a resonant electric response...
Metamaterials are artificial structures, which periodically arranged to exhibit fascinating elec...
Metamaterials are artificial structures, which periodically arranged to exhibit fascinating elec...
We report a novel approach to design metamaterials with sign-varying nonlinear response. The metamat...
We study experimentally the dynamic tunability and self-induced nonlinearity of split-ring resonato...
This Thesis is devoted to theoretical investigation of the effective magnetic properties of nonlinea...
A frequency tunable resonator topology is proposed that consists of an S-shaped resonator, a ground ...
Nonlinear active metamaterial surfaces are constructed of planar periodic engineered structures in t...
In this brief, we designed, constructed, and analyzed a frequency-tunable metamaterial resonator. Th...