We consider the Rydberg electron in a circularly polarized microwave field, whose dynamics is described by a Hamiltonian depending on one parameter, K¿>¿0. The corresponding Hamiltonian system of ODE has two equilibrium points L1 (unstable for all K and energy value h(L1)) and L2 (a center for K¿¿Kcrit, with energy value h(L2)). We study the Hamiltonian-Hopf bifurcation phenomena that take place for K close to Kcrit around L2. First, a local analysis based on the computation of the integrable normal form up to a finite order is carried out and the steps for the computation of this (resonant) normal form are explained in a constructive manner. The analysis of the normal form obtained allows: to claim the type of the Hopf bifurcation –supercr...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
We discuss the classical problem of an hydrogen atom interacting with a monochromatic field. We illu...
The classical dynamics of the hydrogen atom in parallel static and microwave electric fields are ana...
We consider the Rydberg electron in a circularly polarized microwave field, whose dynamics is descri...
The dynamics of the Rydberg atom in a rotating electric field can be described by a two degree of fr...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.52.1358.We ha...
Agraïments: Useful discussions with C. Simo are gratefully acknowledged. The first author was partia...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.50.5077.We re...
We consider the dynamics of Rydberg states of the hydrogen atom driven by a microwave field of ellip...
We study the problem of the hydrogen atom interacting with a circularly polarized microwave field, a...
Using classical dynamics we analyze the ionization of the maximum angular-momentum circular Rydberg ...
We study highly excited hydrogen and alkali atoms ('Rydberg states') under the influence of a strong...
The classical Hamiltonian describing the hydrogen atom in the presence of a static magnetic field of...
What is the behavior of a low-dimensional quantal system whose classical, deterministic, Hamiltonian...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
We discuss the classical problem of an hydrogen atom interacting with a monochromatic field. We illu...
The classical dynamics of the hydrogen atom in parallel static and microwave electric fields are ana...
We consider the Rydberg electron in a circularly polarized microwave field, whose dynamics is descri...
The dynamics of the Rydberg atom in a rotating electric field can be described by a two degree of fr...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.52.1358.We ha...
Agraïments: Useful discussions with C. Simo are gratefully acknowledged. The first author was partia...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.50.5077.We re...
We consider the dynamics of Rydberg states of the hydrogen atom driven by a microwave field of ellip...
We study the problem of the hydrogen atom interacting with a circularly polarized microwave field, a...
Using classical dynamics we analyze the ionization of the maximum angular-momentum circular Rydberg ...
We study highly excited hydrogen and alkali atoms ('Rydberg states') under the influence of a strong...
The classical Hamiltonian describing the hydrogen atom in the presence of a static magnetic field of...
What is the behavior of a low-dimensional quantal system whose classical, deterministic, Hamiltonian...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
We discuss the classical problem of an hydrogen atom interacting with a monochromatic field. We illu...
The classical dynamics of the hydrogen atom in parallel static and microwave electric fields are ana...