We study the spatiotemporal effects in waveguide arrays with Kerr and Raman nonlinearities when a short pulse is launched into the system where both dispersive and diffractive resonant radiations can be simultaneously emitted by solitons. We show that it is possible to generate and control the supercontinuum not only in the frequency domain, but also in the wavenumber domain. This work could potentially pave the way for designing unique optical devices that generate spectrally broad supercontinua with a controllable directionality by taking advantage of the combined physics of optical fibers and waveguide arrays
We present the first observation of spatiospectral control and localization of supercontinuum light ...
We study analytically and numerically the diffractive resonant radiation emitted by spatial solitons...
We report numerical and experimental investigations of spatiotemporal nonlinear optical effects lead...
We study the spatiotemporal effects in waveguide arrays with Kerr and Raman nonlinearities when a sh...
We numerically demonstrate the formation of the spatiotemporal version of the so-called diffractive ...
Advances in the generation of light with supercontinuum spectra in photonic-crystal fibers (PCFs) op...
We describe the precise mechanism behind the rapid and large spectral broadening in the early stages...
We present a results of the modelling of supercontinuum generation in highly nonlinear photonic crys...
The dramatic progress in optical communication is attributed to the development of wavelength-divisi...
In nonlinear dynamical systems, qualitatively distinct phenomena occur depending continuously on the...
We demonstrate that the pump\u27s spatial input profile can provide additional degrees of freedom in...
In this paper we numerically study supercontinuum generation by pumping a silicon nitride waveguide,...
The effect of engineering the dispersion of AlGaAs-on-insulator (AlGaAs-OI) waveguides on superconti...
We demonstrate that the pump's spatial input profile can provide additional degrees of freedom in ta...
The presence of higher order dispersion leads to the transfer of energy from soliton to dispersive w...
We present the first observation of spatiospectral control and localization of supercontinuum light ...
We study analytically and numerically the diffractive resonant radiation emitted by spatial solitons...
We report numerical and experimental investigations of spatiotemporal nonlinear optical effects lead...
We study the spatiotemporal effects in waveguide arrays with Kerr and Raman nonlinearities when a sh...
We numerically demonstrate the formation of the spatiotemporal version of the so-called diffractive ...
Advances in the generation of light with supercontinuum spectra in photonic-crystal fibers (PCFs) op...
We describe the precise mechanism behind the rapid and large spectral broadening in the early stages...
We present a results of the modelling of supercontinuum generation in highly nonlinear photonic crys...
The dramatic progress in optical communication is attributed to the development of wavelength-divisi...
In nonlinear dynamical systems, qualitatively distinct phenomena occur depending continuously on the...
We demonstrate that the pump\u27s spatial input profile can provide additional degrees of freedom in...
In this paper we numerically study supercontinuum generation by pumping a silicon nitride waveguide,...
The effect of engineering the dispersion of AlGaAs-on-insulator (AlGaAs-OI) waveguides on superconti...
We demonstrate that the pump's spatial input profile can provide additional degrees of freedom in ta...
The presence of higher order dispersion leads to the transfer of energy from soliton to dispersive w...
We present the first observation of spatiospectral control and localization of supercontinuum light ...
We study analytically and numerically the diffractive resonant radiation emitted by spatial solitons...
We report numerical and experimental investigations of spatiotemporal nonlinear optical effects lead...