We demonstrate high-harmonic generation for the time-domain observation of the electric field (HHG-TOE) and use it to measure the waveform of ultrashort mid-infrared (MIR) laser pulses interacting with ZnO thin-films or WS$_2$ monolayers. The working principle relies on perturbing HHG in solids with a weak replica of the pump pulse. We measure the duration of few-cycle pulses at 3100\,nm, in reasonable agreement with the results of established pulse characterization techniques. Our method provides a straightforward approach to accurately characterize femtosecond laser pulses used for HHG experiments right at the point of interaction
Solid-state high-harmonic sources offer the possibility of compact, high-repetition-rate attosecond ...
We calculate high-harmonic generation (HHG) by intense infrared lasers in atoms and molecules with t...
In this contribution we experimental examine the ellipticity dependence of strong off resonance abso...
We demonstrate high-harmonic generation for the time-domain observation of the electric field (HHG-T...
High-order harmonic generation (HHG), resulting from the interaction of an intense laser field with ...
When intense light interacts with an atomic gas, recollision between an ionizing electron and its pa...
Harmonic generation is a general feature of driven nonlinear systems. In particular high-order harmo...
Advances in the generation of ultrashort laser pulses, and the emergence of new research areas such ...
We present two methods for measuring the duration of ultrashort high-harmonic pulses produced by an ...
The rapid advances in the generation of ultra-short optical pulses in recent decades have often outs...
In laser-matter interaction experiments, it is of paramount importance to characterize the laser pul...
For the direct exploration of electron dynamics in molecules, e.g. during a chemical reaction, a sho...
This thesis studies the response of atoms and molecules to intense few-cycle laser pulses. It is the...
We calculate high-harmonic generation (HHG) by intense infrared lasers in atoms and molecules with t...
Transparent conducting oxides exhibit giant optical nonlinearities in the near-infrared window where...
Solid-state high-harmonic sources offer the possibility of compact, high-repetition-rate attosecond ...
We calculate high-harmonic generation (HHG) by intense infrared lasers in atoms and molecules with t...
In this contribution we experimental examine the ellipticity dependence of strong off resonance abso...
We demonstrate high-harmonic generation for the time-domain observation of the electric field (HHG-T...
High-order harmonic generation (HHG), resulting from the interaction of an intense laser field with ...
When intense light interacts with an atomic gas, recollision between an ionizing electron and its pa...
Harmonic generation is a general feature of driven nonlinear systems. In particular high-order harmo...
Advances in the generation of ultrashort laser pulses, and the emergence of new research areas such ...
We present two methods for measuring the duration of ultrashort high-harmonic pulses produced by an ...
The rapid advances in the generation of ultra-short optical pulses in recent decades have often outs...
In laser-matter interaction experiments, it is of paramount importance to characterize the laser pul...
For the direct exploration of electron dynamics in molecules, e.g. during a chemical reaction, a sho...
This thesis studies the response of atoms and molecules to intense few-cycle laser pulses. It is the...
We calculate high-harmonic generation (HHG) by intense infrared lasers in atoms and molecules with t...
Transparent conducting oxides exhibit giant optical nonlinearities in the near-infrared window where...
Solid-state high-harmonic sources offer the possibility of compact, high-repetition-rate attosecond ...
We calculate high-harmonic generation (HHG) by intense infrared lasers in atoms and molecules with t...
In this contribution we experimental examine the ellipticity dependence of strong off resonance abso...