Polycrystalline materials can mediate efficient frequency up-conversion for mid-infrared light. Motivated by the need to understand the properties of the harmonic and supercontinuum radiation from such media, we utilize realistic numerical simulations to reveal its complex temporal and spatial structure. We show that the generated radiation propagates in the form of long-duration pulse trains that can be difficult to compress and that optical filamentation in high-energy pulses gives rise to fine-structured beam profiles. We identify trends concerning pulse energy, sample length, and the microstructure of the material that can inform optimization for different applications. © 2021 Optical Society of America under the terms of the OSA Open A...
We demonstrate an optical parametric oscillator (OPO) based on random phase matching in polycrystall...
Polycrystalline ZnSe is an exciting source of broadband supercontinuum and high-harmonic generation ...
We theoretically investigate how phase-only spatial light modulation can enable controlling and focu...
We experimentally and numerically investigated the cascade random-quasi-phase-matched harmonic gener...
We experimentally and theoretically investigate the nonlinear frequency conversion of transparent ch...
International audience; We demonstrate that monochromatic infrared laser pulses can generate polychr...
Random quasi-phase matching (RQPM) in polycrystalline materials has been considered as an important ...
We provide a vectorial model to simulate second-harmonic generation (SHG) in birefringent, transpare...
Ultra-fast laser pulses have made possible the study of extreme nonlinear processes. Many of these e...
We experimentally and numerically investigate the spectral and temporal structure of mid-infrared (m...
We present supercontinuum generation pumped by femtosecond mid-infrared pulses in a bulk homogeneous...
Abstract We present experimental and numerical investigations of high-energy mid-infrared filamen...
High-energy, multi-octave supercontinuum (SC) generation in bulk media pumped with picosecond pulses...
International audienceWe numerically investigate the pulse compression mechanism in the infrared spe...
International audienceNonlinear propagation of intense femtosecond laser pulses in bulk transparent ...
We demonstrate an optical parametric oscillator (OPO) based on random phase matching in polycrystall...
Polycrystalline ZnSe is an exciting source of broadband supercontinuum and high-harmonic generation ...
We theoretically investigate how phase-only spatial light modulation can enable controlling and focu...
We experimentally and numerically investigated the cascade random-quasi-phase-matched harmonic gener...
We experimentally and theoretically investigate the nonlinear frequency conversion of transparent ch...
International audience; We demonstrate that monochromatic infrared laser pulses can generate polychr...
Random quasi-phase matching (RQPM) in polycrystalline materials has been considered as an important ...
We provide a vectorial model to simulate second-harmonic generation (SHG) in birefringent, transpare...
Ultra-fast laser pulses have made possible the study of extreme nonlinear processes. Many of these e...
We experimentally and numerically investigate the spectral and temporal structure of mid-infrared (m...
We present supercontinuum generation pumped by femtosecond mid-infrared pulses in a bulk homogeneous...
Abstract We present experimental and numerical investigations of high-energy mid-infrared filamen...
High-energy, multi-octave supercontinuum (SC) generation in bulk media pumped with picosecond pulses...
International audienceWe numerically investigate the pulse compression mechanism in the infrared spe...
International audienceNonlinear propagation of intense femtosecond laser pulses in bulk transparent ...
We demonstrate an optical parametric oscillator (OPO) based on random phase matching in polycrystall...
Polycrystalline ZnSe is an exciting source of broadband supercontinuum and high-harmonic generation ...
We theoretically investigate how phase-only spatial light modulation can enable controlling and focu...