Photoelectron interferometry with femtosecond and attosecond light pulses is a powerful probe of the fast electron wave-packet dynamics, albeit it has practical limitations on the energy resolution. We show that one can simultaneously obtain both high temporal and spectral resolution by stimulating Raman interferences with one light pulse and monitoring the modification of the electron yield in a separate step. Applying this spectroscopic approach to the autoionizing states of argon, we experimentally resolved its electronic composition and time evolution in exquisite detail. Theoretical calculations show remarkable agreement with the observations and shed light on the light-matter interaction parameters. Using appropriate Raman probing and...
Within this work, electron dynamics inside argon atoms are observed by probing the autoionizing stat...
Using a spectrally resolved electron interferometry technique, we measure photoionization time delay...
A complete quantum-mechanical description of matter and its interaction with the environment require...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
The last two decades have witnessed the emergence of attosecond science, a new discipline that lever...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
Through the advent of high-order harmonic generation and attosecond light pulses, photoionization dy...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
International audienceThe dynamics of quantum systems are encoded in the amplitude and phase of wave...
The dynamics of quantum systems are encoded in the amplitude and phase of wave packets. However, the...
Electronic dynamics takes place at the attosecond timescale. Recent technological advancements perm...
International audienceThis experimental work focuses on the complex autoionization dynamics of Ar2 c...
Within this work, electron dynamics inside argon atoms are observed by probing the autoionizing stat...
Using a spectrally resolved electron interferometry technique, we measure photoionization time delay...
A complete quantum-mechanical description of matter and its interaction with the environment require...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
The last two decades have witnessed the emergence of attosecond science, a new discipline that lever...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
Through the advent of high-order harmonic generation and attosecond light pulses, photoionization dy...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
International audienceThe dynamics of quantum systems are encoded in the amplitude and phase of wave...
The dynamics of quantum systems are encoded in the amplitude and phase of wave packets. However, the...
Electronic dynamics takes place at the attosecond timescale. Recent technological advancements perm...
International audienceThis experimental work focuses on the complex autoionization dynamics of Ar2 c...
Within this work, electron dynamics inside argon atoms are observed by probing the autoionizing stat...
Using a spectrally resolved electron interferometry technique, we measure photoionization time delay...
A complete quantum-mechanical description of matter and its interaction with the environment require...