The power of attosecond pump-probe spectroscopy combined with advanced detection schemes, such as photoelectron/ion coincidence spectrometers and time-resolved photoelectron emission microscopy (PEEM), can be unleashed by properly accounting for the repetition rate of the source. In this work, we present a high-repetition rate (200 kHz) attosecond pulse source that opens up for exploring phenomena, previously inaccessible to the community using attosecond interferometric and spectroscopy pump-probe techniques [1]
The development of attosecond technology is one of the most significant recent achievements in the f...
In this work we demonstrate the generation of two intense, ultrafast laser pulses that allow a contr...
High-order harmonic generation (HHG) provides the basis for attosecond light sources delivering cohe...
Attosecond pulses, produced through high-order harmonic generation in gases, have been successfully ...
We present a high-repetition rate, atttosecond light source, emitting controlled short trains of att...
An attosecond pump-probe beamline with 100 kHz repetition rate for coincidence experiments has been ...
The strong-field process of high-harmonic generation is the foundation for generating isolated attos...
The development of attosecond pump-probe experiments at high repetition rate requires the developmen...
High-repetition rate attosecond pulse sources are indispensable tools for time-resolved studies of e...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
The generation of coherent light pulses in the extreme ultraviolet (XUV) spectral region with attose...
This work aims at studying photoionization dynamics from atoms and surfaces at attose time scales. T...
Within the last two decades attosecond science has been established as a novel research field provid...
In this paper, a 3-dimensional photoelectron/ion momentum spectrometer (reaction microscope) combine...
The development of attosecond technology is one of the most significant recent achievements in the f...
In this work we demonstrate the generation of two intense, ultrafast laser pulses that allow a contr...
High-order harmonic generation (HHG) provides the basis for attosecond light sources delivering cohe...
Attosecond pulses, produced through high-order harmonic generation in gases, have been successfully ...
We present a high-repetition rate, atttosecond light source, emitting controlled short trains of att...
An attosecond pump-probe beamline with 100 kHz repetition rate for coincidence experiments has been ...
The strong-field process of high-harmonic generation is the foundation for generating isolated attos...
The development of attosecond pump-probe experiments at high repetition rate requires the developmen...
High-repetition rate attosecond pulse sources are indispensable tools for time-resolved studies of e...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
The generation of coherent light pulses in the extreme ultraviolet (XUV) spectral region with attose...
This work aims at studying photoionization dynamics from atoms and surfaces at attose time scales. T...
Within the last two decades attosecond science has been established as a novel research field provid...
In this paper, a 3-dimensional photoelectron/ion momentum spectrometer (reaction microscope) combine...
The development of attosecond technology is one of the most significant recent achievements in the f...
In this work we demonstrate the generation of two intense, ultrafast laser pulses that allow a contr...
High-order harmonic generation (HHG) provides the basis for attosecond light sources delivering cohe...