We use classical electron ensembles and the aligned-electron approximation to examine the effect of laser pulse duration on the dynamics of strong-field double ionization. We cover the range of intensities $10^{14}-10^{16} W/cm^2$ for the laser wavelength 780 nm. The classical scenario suggests that the highest rate of recollision occurs early in the pulse and promotes double ionization production in few-cycle pulses. In addition, the purely classical ensemble calculation predicts an exponentially decreasing recollision rate with each subsequent half cycle. We confirm the exponential behavior by trajectory back-analysis
We determine quantitatively the laser pulse duration dependence of the low-energy structure (LES) in...
We consider the classical dynamics of a two-electron system subjected to an intense bichromatic line...
We develop an analytical model of correlated two-electron ionization in strong infrared laser fields...
Quantum calculations of a (1+1)-dimensional model for double ionization in strong laser fields are ...
Quantum calculations of a 1+1-dimensional model for double ionization in strong laser fields are use...
Two-electron dynamics of an excited model atom interacting with moderately strong laser fields is an...
We develop a semiclassical quasistatic model accounting for molecular double ionization in an intens...
We discuss double ionization of atoms in strong laser pulses using a reduced dimensionality model. F...
When intense laser pulses release electrons nonsequentially, the time delay between the last recolli...
We investigate the dynamics of electron-electron recollisions in the double ionization of atoms in s...
We present a joint experimental and theoretical study of non-sequential double ionization (NSDI) in ...
Both uncorrelated (\u27sequential\u27) and correlated (\u27nonsequential\u27) processes contribute t...
We identify the phase-space structures that regulate atomic double ionization in strong ultrashort l...
International audienceWe identify the phase-space structures that regulate atomic double ionization ...
The timing of electron release in strong-field double ionization poses great challenges both for con...
We determine quantitatively the laser pulse duration dependence of the low-energy structure (LES) in...
We consider the classical dynamics of a two-electron system subjected to an intense bichromatic line...
We develop an analytical model of correlated two-electron ionization in strong infrared laser fields...
Quantum calculations of a (1+1)-dimensional model for double ionization in strong laser fields are ...
Quantum calculations of a 1+1-dimensional model for double ionization in strong laser fields are use...
Two-electron dynamics of an excited model atom interacting with moderately strong laser fields is an...
We develop a semiclassical quasistatic model accounting for molecular double ionization in an intens...
We discuss double ionization of atoms in strong laser pulses using a reduced dimensionality model. F...
When intense laser pulses release electrons nonsequentially, the time delay between the last recolli...
We investigate the dynamics of electron-electron recollisions in the double ionization of atoms in s...
We present a joint experimental and theoretical study of non-sequential double ionization (NSDI) in ...
Both uncorrelated (\u27sequential\u27) and correlated (\u27nonsequential\u27) processes contribute t...
We identify the phase-space structures that regulate atomic double ionization in strong ultrashort l...
International audienceWe identify the phase-space structures that regulate atomic double ionization ...
The timing of electron release in strong-field double ionization poses great challenges both for con...
We determine quantitatively the laser pulse duration dependence of the low-energy structure (LES) in...
We consider the classical dynamics of a two-electron system subjected to an intense bichromatic line...
We develop an analytical model of correlated two-electron ionization in strong infrared laser fields...