We present numerical evidence for the existence of a classically non-ionizing, highly correlated two-electron configuration which emerges from the frozen planet configuration of helium exposed to an electromagnetic field of linear polarization. A static electric field parallel to the polarization axis prevents this configuration from transverse ionization. We argue that the corresponding nonlinear resonance island in 12D phase space supports nondispersive wave packets of the helium atom in combined oscillating and static electric fields
We consider the dynamics of Rydberg states of the hydrogen atom driven by a microwave field of ellip...
Using a three-dimensional semiclassical method, we perform a systematic analysis of the effects of a...
We analyze the influence of classical phase-space structures on the ionization behavior of Rydberg a...
peer reviewedWe provide a detailed quantum treatment of the spectral characteristics and of the dyna...
Nondispersive two-electron wave packets are found in the Floquet spectrum of the driven, one-dimensi...
We present a detailed analysis of the classical and quantum dynamics of the frozen-planet configurat...
Nondispersive two-electron wave packets are found in the Floquet spectrum of the driven, one-dimensi...
peer reviewedWe present a detailed analysis of the classical dynamics of the frozen-planet configura...
The collinear eZe configuration of helium, with the electrons on opposite sides of the nucleus, is s...
We show how a static electric field can be used to control the localization of nonspreading wavepack...
Practicable equations of motion for the natural orbitals of a spin-singlet helium atom in a linearly...
We show that combination of a linearly polarized resonant microwave field and a parallel static elec...
We provide a full characterization of two-electron nondispersive wave packets found in the Floquet s...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
With the exception of the harmonic oscillator, quantum wave packets usually spread as time evolves. ...
We consider the dynamics of Rydberg states of the hydrogen atom driven by a microwave field of ellip...
Using a three-dimensional semiclassical method, we perform a systematic analysis of the effects of a...
We analyze the influence of classical phase-space structures on the ionization behavior of Rydberg a...
peer reviewedWe provide a detailed quantum treatment of the spectral characteristics and of the dyna...
Nondispersive two-electron wave packets are found in the Floquet spectrum of the driven, one-dimensi...
We present a detailed analysis of the classical and quantum dynamics of the frozen-planet configurat...
Nondispersive two-electron wave packets are found in the Floquet spectrum of the driven, one-dimensi...
peer reviewedWe present a detailed analysis of the classical dynamics of the frozen-planet configura...
The collinear eZe configuration of helium, with the electrons on opposite sides of the nucleus, is s...
We show how a static electric field can be used to control the localization of nonspreading wavepack...
Practicable equations of motion for the natural orbitals of a spin-singlet helium atom in a linearly...
We show that combination of a linearly polarized resonant microwave field and a parallel static elec...
We provide a full characterization of two-electron nondispersive wave packets found in the Floquet s...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
With the exception of the harmonic oscillator, quantum wave packets usually spread as time evolves. ...
We consider the dynamics of Rydberg states of the hydrogen atom driven by a microwave field of ellip...
Using a three-dimensional semiclassical method, we perform a systematic analysis of the effects of a...
We analyze the influence of classical phase-space structures on the ionization behavior of Rydberg a...