Waveform nonlinear optics aims to study and control the nonlinear interactions of matter with extremely short optical waveforms custom-tailored within a single cycle of light. Different technological routes to generate such multimillijoule sub-optical-cycle waveforms are currently pursued, opening up unprecedented opportunities in attoscience and strong-field physics. Here, we discuss the experimental schemes, introduce the technological challenges, and present our experimental results on high-energy sub-cycle optical waveform synthesis based on (1) parametric amplification and (2) induced-phase modulation in a two-color-driven gas-filled hollow-core fiber compressor. More specifically, for (1), we demonstrate a carrier-envelope-phase (CEP)...
A stable 50-mJ three-channel optical waveform synthesizer is demonstrated and used to reproducibly g...
Coherent light-field synthesis is a promising route to scale the bandwidthof optical parametric ampl...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...
Waveform nonlinear optics aims to study and control the nonlinear interactions of matter with extrem...
We report on an optical synthesis of two compressed channels from our parametric waveform synthesize...
The coherent synthesis of pulses from Optical Parametric Amplifiers (OPAs) offers the possibility to...
The motivation to control and temporarily isolate a single quantum mechanical event like an electron...
We demonstrate 1.7-mJ optical waveforms based on induced-phase modulation for generating sub-femtose...
With the recently experimentally pioneered sub-cycle parallel parametric waveform synthesis [1], we ...
Femtosecond and attosecond pulses have triggered in the last decades several scientific achievements...
We report the extension of hollow-core fibre pulse compression to longer wavelengths. High-energy mu...
We discuss a carrier-envelope phase-stable, 3-channel parametric synthesizer for creating a 2-octave...
We succeeded in generating 860-mu J pulses spanning the range from 270 to 1000 nm, the highest energ...
We compressed and characterized using FROG a 3-channel, multi-mJ, sub-optical-cycle parametric wavef...
Continued progress in photon science demands advances in light source technology. For this purpose, ...
A stable 50-mJ three-channel optical waveform synthesizer is demonstrated and used to reproducibly g...
Coherent light-field synthesis is a promising route to scale the bandwidthof optical parametric ampl...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...
Waveform nonlinear optics aims to study and control the nonlinear interactions of matter with extrem...
We report on an optical synthesis of two compressed channels from our parametric waveform synthesize...
The coherent synthesis of pulses from Optical Parametric Amplifiers (OPAs) offers the possibility to...
The motivation to control and temporarily isolate a single quantum mechanical event like an electron...
We demonstrate 1.7-mJ optical waveforms based on induced-phase modulation for generating sub-femtose...
With the recently experimentally pioneered sub-cycle parallel parametric waveform synthesis [1], we ...
Femtosecond and attosecond pulses have triggered in the last decades several scientific achievements...
We report the extension of hollow-core fibre pulse compression to longer wavelengths. High-energy mu...
We discuss a carrier-envelope phase-stable, 3-channel parametric synthesizer for creating a 2-octave...
We succeeded in generating 860-mu J pulses spanning the range from 270 to 1000 nm, the highest energ...
We compressed and characterized using FROG a 3-channel, multi-mJ, sub-optical-cycle parametric wavef...
Continued progress in photon science demands advances in light source technology. For this purpose, ...
A stable 50-mJ three-channel optical waveform synthesizer is demonstrated and used to reproducibly g...
Coherent light-field synthesis is a promising route to scale the bandwidthof optical parametric ampl...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...