International audienceThe uncorrelated (''sequential'') and correlated (''nonsequential'') double ionization of the H2 molecule in strong laser pulses is investigated using the tools of nonlinear dynamics. We focus on the phase-space dynamics of this system, specifically by finding the dynamical structures that regulate these ionization processes. The emerging picture complements the recollision scenario by clarifying the distinct roles played by the recolliding and core electrons. Our analysis leads to verifiable predictions of the intensities where qualitative changes in ionization occur. We also show how these findings depend on the internuclear distance
We investigate the dynamics of electron-electron recollisions in the double ionization of atoms in s...
Lorsqu'ils sont soumis à des pulses laser courts et intenses, des atomes peuvent perdre des électron...
We consider the classical dynamics of a two-electron system subjected to an intense bichromatic line...
The uncorrelated ( sequential ) and correlated ( nonsequential ) double ionization of the H2 molecul...
Both uncorrelated (\u27sequential\u27) and correlated (\u27nonsequential\u27) processes contribute t...
International audienceBoth uncorrelated (''sequential'') and correlated (''nonsequential'') processe...
International audienceWe identify the phase-space structures that regulate atomic double ionization ...
We identify the phase-space structures that regulate atomic double ionization in strong ultrashort l...
International audienceDouble ionization processes triggered by intense linearly polarized laser fiel...
International audienceThe ultrafast electronic and nuclear dynamics of H2 laser-induced double ioniz...
Double ionization processes triggered by intense linearly polarized laser fields have revealed the p...
International audienceWe investigate the dynamics of electron-electron recollisions in the double io...
International audienceWe consider the classical dynamics of a two-electron system subjected to an in...
International audienceWe consider the classical dynamics of a two-electron system subjected to an in...
We present a theoretical study of H2+ ionization under strong IR femtosecond pulses by using a metho...
We investigate the dynamics of electron-electron recollisions in the double ionization of atoms in s...
Lorsqu'ils sont soumis à des pulses laser courts et intenses, des atomes peuvent perdre des électron...
We consider the classical dynamics of a two-electron system subjected to an intense bichromatic line...
The uncorrelated ( sequential ) and correlated ( nonsequential ) double ionization of the H2 molecul...
Both uncorrelated (\u27sequential\u27) and correlated (\u27nonsequential\u27) processes contribute t...
International audienceBoth uncorrelated (''sequential'') and correlated (''nonsequential'') processe...
International audienceWe identify the phase-space structures that regulate atomic double ionization ...
We identify the phase-space structures that regulate atomic double ionization in strong ultrashort l...
International audienceDouble ionization processes triggered by intense linearly polarized laser fiel...
International audienceThe ultrafast electronic and nuclear dynamics of H2 laser-induced double ioniz...
Double ionization processes triggered by intense linearly polarized laser fields have revealed the p...
International audienceWe investigate the dynamics of electron-electron recollisions in the double io...
International audienceWe consider the classical dynamics of a two-electron system subjected to an in...
International audienceWe consider the classical dynamics of a two-electron system subjected to an in...
We present a theoretical study of H2+ ionization under strong IR femtosecond pulses by using a metho...
We investigate the dynamics of electron-electron recollisions in the double ionization of atoms in s...
Lorsqu'ils sont soumis à des pulses laser courts et intenses, des atomes peuvent perdre des électron...
We consider the classical dynamics of a two-electron system subjected to an intense bichromatic line...