Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a negative‐index medium, is one of the most intriguing phenomena in nonlinear metamaterials. Predicted theoretically decades ago, however, it is still a challenging task to be applied for efficient second harmonic (SH) generation in a nonlinear metamaterial with ultrathin geometry and ultralow loss. Here, a negative‐index spoof plasmonic metamaterial is reported, which is composed of an ultrathin symmetrical corrugated metallic strips loaded with nonlinear active devices. The simulated and measured power spectra and surface near‐field distributions show that a peak SH signal can be generated at the backward phase‐matched frequency point in a 120° c...
The phase matching between the propagating fundamental and nonlinearly generated waves plays an impo...
Nanostructured surfaces, which drastically manipulate light on a very small spatial scale were inves...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a nega...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials c...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional meta-materials ...
We show that a deliberately engineered dispersive metamaterial slab can enable the coexistence and p...
Metamaterials possess extraordinary linear optical properties never observed in natural materials su...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.We show that a del...
The ultimate goal of this thesis is to develop meta-structured devices that simultaneously sustain b...
We study pulsed second harmonic generation in metamaterials under conditions of significant absorpti...
We demonstrate a simple and scalable approach to increase conversion efficiencies of nonlinear metas...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
The phase matching between the propagating fundamental and nonlinearly generated waves plays an impo...
Nanostructured surfaces, which drastically manipulate light on a very small spatial scale were inves...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a nega...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials c...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional meta-materials ...
We show that a deliberately engineered dispersive metamaterial slab can enable the coexistence and p...
Metamaterials possess extraordinary linear optical properties never observed in natural materials su...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.We show that a del...
The ultimate goal of this thesis is to develop meta-structured devices that simultaneously sustain b...
We study pulsed second harmonic generation in metamaterials under conditions of significant absorpti...
We demonstrate a simple and scalable approach to increase conversion efficiencies of nonlinear metas...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
The phase matching between the propagating fundamental and nonlinearly generated waves plays an impo...
Nanostructured surfaces, which drastically manipulate light on a very small spatial scale were inves...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...