Quantum trajectory perspective of atom-field interaction in attosecond time scale

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1. Verfasser: Christov, Ivan P.
Format: Preprint
Veröffentlicht: 2006
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author Christov, Ivan P.
author_facet Christov, Ivan P.
contents Here the ionization and high harmonic generation in Hydrogen and Helium by using quantum (hydrodynamic) trajectories is analyzed theoretically. The quantum trajectories allow a self-contained treatment of the electron exchange and correlation effects without introducing ad hoc potentials into the Schrodinger equation. Our approach predicts the correct high harmonic spectra and the attosecond pulses generated by the Helium atom beyond the single active electron approximation. It can be used to study complex multi-electron systems and their interaction with laser field of both high and low intensity.
format Preprint
id arxiv_https___arxiv_org_abs_physics_0607110
institution arXiv
publishDate 2006
record_format arxiv
spellingShingle Quantum trajectory perspective of atom-field interaction in attosecond time scale
Christov, Ivan P.
Atomic Physics
Accelerator Physics
Here the ionization and high harmonic generation in Hydrogen and Helium by using quantum (hydrodynamic) trajectories is analyzed theoretically. The quantum trajectories allow a self-contained treatment of the electron exchange and correlation effects without introducing ad hoc potentials into the Schrodinger equation. Our approach predicts the correct high harmonic spectra and the attosecond pulses generated by the Helium atom beyond the single active electron approximation. It can be used to study complex multi-electron systems and their interaction with laser field of both high and low intensity.
title Quantum trajectory perspective of atom-field interaction in attosecond time scale
topic Atomic Physics
Accelerator Physics
url https://arxiv.org/abs/physics/0607110