We perform interferometric attosecond timing measurements to study XUV photoionization in noble gases, to diagnose macroscopic phase-matching conditions in high-order harmonic generation, and to investigate single-photon double-ionization by detecting electron pairs in coincidence
Temporally coherent XUV spectrum covering 20 to 600 eV was generated by an attosecond light switch. ...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
Attosecond pulses, produced through high-order harmonic generation in gases, have been successfully ...
Photoionization time delays are measured with two-color (XUV+IR) interferometric techniques. The com...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
We present experimental measurements and theoretical calculations of single and double ionization ti...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
In this work we demonstrate the generation of two intense, ultrafast laser pulses that allow a contr...
Attosecond extreme ultraviolet light pulses have the potential to resolve the ultrafast electron dyn...
We present experimental measurements of attosecond pulse trains. The characterization of the pulses ...
Here we present a successful combination of an attosecond beamline with a COLTRIMS apparatus, which ...
Ultrafast science refers to physical events that happen on the femtosecond (1 fs=10^-15 s) and attos...
Chemical and physical processes in molecules can be controlled through the manipulation of quantum i...
Temporally coherent XUV spectrum covering 20 to 600 eV was generated by an attosecond light switch. ...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
Attosecond pulses, produced through high-order harmonic generation in gases, have been successfully ...
Photoionization time delays are measured with two-color (XUV+IR) interferometric techniques. The com...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...
Real-time studies of ultra-fast evolving quantum systems require even faster probe mechanisms. For e...
We present experimental measurements and theoretical calculations of single and double ionization ti...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
In this work we demonstrate the generation of two intense, ultrafast laser pulses that allow a contr...
Attosecond extreme ultraviolet light pulses have the potential to resolve the ultrafast electron dyn...
We present experimental measurements of attosecond pulse trains. The characterization of the pulses ...
Here we present a successful combination of an attosecond beamline with a COLTRIMS apparatus, which ...
Ultrafast science refers to physical events that happen on the femtosecond (1 fs=10^-15 s) and attos...
Chemical and physical processes in molecules can be controlled through the manipulation of quantum i...
Temporally coherent XUV spectrum covering 20 to 600 eV was generated by an attosecond light switch. ...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
The implementation of attosecond photoelectron-photoion coincidence spectroscopy for the investigati...