Attosecond pulses are produced when an intense infrared laser pulse induces a dipole interaction between a sublaser cycle recollision electron wave packet and the remaining coherently related bound-state population. By solving the time-dependent Schr\uf6dinger equation we show that, if the recollision electron is extracted from one or more electronic states that contribute to the bound-state wave packet, then the spectrum of the attosecond pulse is modulated depending on the relative motion of the continuum and bound wave packets. When the internal electron and recollision electron wave packet counterpropagate, the radiation intensity is lower. We show that we can fully characterize the attosecond bound-state wave packet dynamics. We demons...
This is the author’s version of the work. It is posted here by permission of the AAAS for personal u...
We present experiments, supported by time-dependent Schrödinger simulations, on the dynamics of Heli...
Attosecond science promises to allow new forms of quantum control in which a broadband isolated atto...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
We demonstrate that an electron wave packet produced during intense field ionization can be used for...
International audienceA strong laser field may tunnel ionize a molecule from several orbitals simult...
We present a time-dependent method for calculating the energy-dependent atomic dipole phase that an ...
Capturing electronic dynamics in real time has been the ultimate goal of attosecond science since it...
We investigate the possibility of using transient absorption of a coherent bound electron wave packe...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
Tracking and controlling the dynamic evolution of matter under the influence of external fields is a...
We present an interferometric pump-probe technique for the characterization of attosecond electron w...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
Attosecond pulses are opening a wide new field on the border of chemistry and physics. They offer th...
Within this work, electron dynamics in atoms are experimentally and numerically investigated on thei...
This is the author’s version of the work. It is posted here by permission of the AAAS for personal u...
We present experiments, supported by time-dependent Schrödinger simulations, on the dynamics of Heli...
Attosecond science promises to allow new forms of quantum control in which a broadband isolated atto...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
We demonstrate that an electron wave packet produced during intense field ionization can be used for...
International audienceA strong laser field may tunnel ionize a molecule from several orbitals simult...
We present a time-dependent method for calculating the energy-dependent atomic dipole phase that an ...
Capturing electronic dynamics in real time has been the ultimate goal of attosecond science since it...
We investigate the possibility of using transient absorption of a coherent bound electron wave packe...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
Tracking and controlling the dynamic evolution of matter under the influence of external fields is a...
We present an interferometric pump-probe technique for the characterization of attosecond electron w...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
Attosecond pulses are opening a wide new field on the border of chemistry and physics. They offer th...
Within this work, electron dynamics in atoms are experimentally and numerically investigated on thei...
This is the author’s version of the work. It is posted here by permission of the AAAS for personal u...
We present experiments, supported by time-dependent Schrödinger simulations, on the dynamics of Heli...
Attosecond science promises to allow new forms of quantum control in which a broadband isolated atto...