Non-collinear optical parametric amplification has become the leading technology for amplifying few-cycle carrier-envelope phase (CEP) stable pulses to high energy at extreme repetition rates. In this work, a parametric amplifier system devoted to ultrafast photoionization experiments with coincidence detection is reported. The amplifier delivers CEP-stable few-cycle pulses with an average power of 5 W, and operates at repetition rates between 400 and 800 kHz. Close to transform-limited compression of the few-cycle pulses is achieved with minimized spatio-temporal distortions. Potential limitations introduced by spatio-temporal couplings to applications in attosecond science are analyzed. In particular, it is shown that pulse front tilt res...
We generate few-cycle laser pulses from both the depleted pump and the signal of an optical parametr...
The strong-field process of high-harmonic generation is the foundation for generating isolated attos...
With the recently experimentally pioneered sub-cycle parallel parametric waveform synthesis [1], we ...
Noncollinear optical parametric amplifiers (NOPAs) have become the leading technique for the amplifi...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...
Optical parametric chirped pulse amplification (OPCPA) is a well established method to produce high-e...
An attosecond pump-probe beamline with 100 kHz repetition rate for coincidence experiments has been ...
Attosecond science is one of the fastest developing fields in the ultrafast laser physics. This fiel...
Femtosecond and attosecond pulses have triggered in the last decades several scientific achievements...
Optical parametric chirped pulse amplification (OPCPA) is a well established method to produce high-e...
Coherent light-field synthesis is a promising route to scale the bandwidthof optical parametric ampl...
peer reviewedThis work presents a single-stage optical parametric amplifier (OPA) operating at degen...
Noncollinearly phase-matched optical parametric amplifiers (NOPAs) - pumped with the green light of ...
We present a CEP stable optical parametric amplifier with sub-2 cycle pulses at megahertz repetition...
We report on the development of a 2 MHz non collinear optical parametric amplifier (NOPA) for high r...
We generate few-cycle laser pulses from both the depleted pump and the signal of an optical parametr...
The strong-field process of high-harmonic generation is the foundation for generating isolated attos...
With the recently experimentally pioneered sub-cycle parallel parametric waveform synthesis [1], we ...
Noncollinear optical parametric amplifiers (NOPAs) have become the leading technique for the amplifi...
We report on the energy scaling and coherent waveform synthesis of a carrier-envelope phase (CEP)-st...
Optical parametric chirped pulse amplification (OPCPA) is a well established method to produce high-e...
An attosecond pump-probe beamline with 100 kHz repetition rate for coincidence experiments has been ...
Attosecond science is one of the fastest developing fields in the ultrafast laser physics. This fiel...
Femtosecond and attosecond pulses have triggered in the last decades several scientific achievements...
Optical parametric chirped pulse amplification (OPCPA) is a well established method to produce high-e...
Coherent light-field synthesis is a promising route to scale the bandwidthof optical parametric ampl...
peer reviewedThis work presents a single-stage optical parametric amplifier (OPA) operating at degen...
Noncollinearly phase-matched optical parametric amplifiers (NOPAs) - pumped with the green light of ...
We present a CEP stable optical parametric amplifier with sub-2 cycle pulses at megahertz repetition...
We report on the development of a 2 MHz non collinear optical parametric amplifier (NOPA) for high r...
We generate few-cycle laser pulses from both the depleted pump and the signal of an optical parametr...
The strong-field process of high-harmonic generation is the foundation for generating isolated attos...
With the recently experimentally pioneered sub-cycle parallel parametric waveform synthesis [1], we ...