The properties of backward-wave second-harmonic metareflector operating in pulse regime are investigated. It is made of metamaterial which enables phase matching of contra-propagating fundamental and secondharmonic waves. References are given to the works that prove such a possibility. Physical principles underlying differences in the proposed and standard settings as well as between continuous-wave and pulsed regimes are discussed. Pulsed regime is more practicable and has a broader scope of applications. A set of partial differential equations which describe such a reflector with the account for losses are solved numerically. It is shown that unlike second-harmonic generation in standard settings, contrapropagating pulse of second harmoni...
The present investigation is concerned with the study of pulsed second-harmonic generation under con...
We report on backward second-harmonic- generation in periodically poled lithium niobate with a 3.2 m...
The dynamics of second harmonic generation in strongly dispersive optical waveguides is investigated...
The properties of backward-wave second-harmonic metareflector operating in pulse regime are investig...
We show that a deliberately engineered dispersive metamaterial slab can enable the coexistence and p...
We study pulsed second harmonic generation in metamaterials under conditions of significant absorpt...
Backward electromagnetic waves are extraordinary waves with contra-directed phase velocity and energ...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a nega...
We present experiments on second-harmonic generation from arrays of magnetic split-ring resonators a...
Noncollinear second-harmonic generation from two ultrashort pulses intersecting in a nonlinear mediu...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials c...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional meta-materials ...
The present investigation is concerned with the study of pulsed second-harmonic generation under con...
We report on backward second-harmonic- generation in periodically poled lithium niobate with a 3.2 m...
The dynamics of second harmonic generation in strongly dispersive optical waveguides is investigated...
The properties of backward-wave second-harmonic metareflector operating in pulse regime are investig...
We show that a deliberately engineered dispersive metamaterial slab can enable the coexistence and p...
We study pulsed second harmonic generation in metamaterials under conditions of significant absorpt...
Backward electromagnetic waves are extraordinary waves with contra-directed phase velocity and energ...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a nega...
We present experiments on second-harmonic generation from arrays of magnetic split-ring resonators a...
Noncollinear second-harmonic generation from two ultrashort pulses intersecting in a nonlinear mediu...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials c...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional meta-materials ...
The present investigation is concerned with the study of pulsed second-harmonic generation under con...
We report on backward second-harmonic- generation in periodically poled lithium niobate with a 3.2 m...
The dynamics of second harmonic generation in strongly dispersive optical waveguides is investigated...