Four-wave-mixing processes enabled during optical wave-breaking (OWB) are exploited in this paper for supercontinuum generation. Unlike conventional approaches based on OWB, phase-matching is achieved here for these nonlinear interactions, and, consequently, new frequency production becomes more efficient. We take advantage of this kind of pulse propagation to obtain numerically a coherent octave-spanning mid-infrared supercontinuum generation in a silicon waveguide pumping at telecom wavelengths in the normal dispersion regime. This scheme shows a feasible path to overcome limits imposed by two-photon absorption on spectral broadening in silicon waveguide
We demonstrate the generation of a stable supercontinuum in a 1-cm-long hydrogenated amorphous silic...
We demonstrate femtosecond supercontinuum generation in a silicon waveguide. Despite the strong nonl...
In this work we recognize new strategies involving optical wave-breaking for controlling the output ...
Four-wave-mixing processes enabled during optical wave-breaking (OWB) are exploited in this paper fo...
A fully analytical toolbox for supercontinuum generation relying on scenarios without pulse splittin...
Compact chip-scale comb sources are of significant interest for many practical applications. Here, w...
Dramatic advances in supercontinuum generation have been made recently using photonic crystal fibers...
Several kinds of nonlinear optical effects have been observed in recent years using silicon waveguid...
We demonstrate that stimulated supercontinuum generation alleviates restrictions on spectral broaden...
We theoretically find the third order dispersion that optimizes the spectral broadening induced by o...
We theoretically find the third order dispersion that optimizes the spectral broadening induced by o...
We theoretically find the third order dispersion that optimizes the spectral broadening induced by o...
We demonstrate the generation of a stable supercontinuum in a 1-cm-long hydrogenated amorphous silic...
We describe an experiment in which a train of femtosecond pulses is coupled into a photonic crystal ...
We experimentally show octave-spanning supercontinuum generation in a nonstoichiometric silicon-rich...
We demonstrate the generation of a stable supercontinuum in a 1-cm-long hydrogenated amorphous silic...
We demonstrate femtosecond supercontinuum generation in a silicon waveguide. Despite the strong nonl...
In this work we recognize new strategies involving optical wave-breaking for controlling the output ...
Four-wave-mixing processes enabled during optical wave-breaking (OWB) are exploited in this paper fo...
A fully analytical toolbox for supercontinuum generation relying on scenarios without pulse splittin...
Compact chip-scale comb sources are of significant interest for many practical applications. Here, w...
Dramatic advances in supercontinuum generation have been made recently using photonic crystal fibers...
Several kinds of nonlinear optical effects have been observed in recent years using silicon waveguid...
We demonstrate that stimulated supercontinuum generation alleviates restrictions on spectral broaden...
We theoretically find the third order dispersion that optimizes the spectral broadening induced by o...
We theoretically find the third order dispersion that optimizes the spectral broadening induced by o...
We theoretically find the third order dispersion that optimizes the spectral broadening induced by o...
We demonstrate the generation of a stable supercontinuum in a 1-cm-long hydrogenated amorphous silic...
We describe an experiment in which a train of femtosecond pulses is coupled into a photonic crystal ...
We experimentally show octave-spanning supercontinuum generation in a nonstoichiometric silicon-rich...
We demonstrate the generation of a stable supercontinuum in a 1-cm-long hydrogenated amorphous silic...
We demonstrate femtosecond supercontinuum generation in a silicon waveguide. Despite the strong nonl...
In this work we recognize new strategies involving optical wave-breaking for controlling the output ...