We present a theoretical study of the main characteristics of two-color photoionization of hydrogen atoms by short strong laser pulses. Our numerical approach is performed by numerically solving the time-dependent Schrödinger equation for a hydrogen atom interacting with Ti:sapphire laser radiation combined with its 15th harmonic. The energy spectra obtained by the direct numerical solution of the Schrödinger equation are compared with those given by the Kroll and Watson perturbative approach. This comparison allows us to check the reliability of the latter approximation.SCOPUS: ar.jDecretOANoAutActifinfo:eu-repo/semantics/publishe
We report on numerical results of energy spectra of photoelectrons emitted by irradiating a hydrogen...
We calculate nonperturbatively the influence of a strong circularly polarized laser beam on the hydr...
The advancements of laser technology make it possible to produce high-energy lasers. It is of intere...
We study both the above-threshold ionization spectrum and harmonics generation resulting from the in...
With the help of the solution of the time-dependent Schrödinger equation in momentum space, we study...
The interaction between laser radiation and atomic system, can lead to various physical processes su...
The time-dependent Schrödinger equation for atomic hydrogen in few-cycle laser pulses is solved nume...
We compare calculated optical harmonic spectra for the hydrogen molecule and the hydrogen atom in an...
This research is devoted to a detailed study of the interaction between atom and intense laser field...
In this thesis, a model to describe the interactions between hydrogen-like atoms and intense laser p...
The authors present a comparison of theoretical and experimental data for the first three above-thre...
We report on numerical results of energy spectra of photoelectrons emitted by irradiating a hydrogen...
We have solved the time-dependent Schrödinger equation for a hydrogen atom, initially in its ground ...
The dynamic stabilization of atomic hydrogen against ionization in high-frequency single- and two-co...
We have solved the time-dependent Schrödinger equation to analyze the time evolution of a hydrogen a...
We report on numerical results of energy spectra of photoelectrons emitted by irradiating a hydrogen...
We calculate nonperturbatively the influence of a strong circularly polarized laser beam on the hydr...
The advancements of laser technology make it possible to produce high-energy lasers. It is of intere...
We study both the above-threshold ionization spectrum and harmonics generation resulting from the in...
With the help of the solution of the time-dependent Schrödinger equation in momentum space, we study...
The interaction between laser radiation and atomic system, can lead to various physical processes su...
The time-dependent Schrödinger equation for atomic hydrogen in few-cycle laser pulses is solved nume...
We compare calculated optical harmonic spectra for the hydrogen molecule and the hydrogen atom in an...
This research is devoted to a detailed study of the interaction between atom and intense laser field...
In this thesis, a model to describe the interactions between hydrogen-like atoms and intense laser p...
The authors present a comparison of theoretical and experimental data for the first three above-thre...
We report on numerical results of energy spectra of photoelectrons emitted by irradiating a hydrogen...
We have solved the time-dependent Schrödinger equation for a hydrogen atom, initially in its ground ...
The dynamic stabilization of atomic hydrogen against ionization in high-frequency single- and two-co...
We have solved the time-dependent Schrödinger equation to analyze the time evolution of a hydrogen a...
We report on numerical results of energy spectra of photoelectrons emitted by irradiating a hydrogen...
We calculate nonperturbatively the influence of a strong circularly polarized laser beam on the hydr...
The advancements of laser technology make it possible to produce high-energy lasers. It is of intere...