We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and magnetic fields of all possible mutual orientations. Normalizing with regard to the Keplerian symmetry, we uncover resonances and conjecture that the parameter space of this family of dynamical systems is stratified into zones centred on the resonances. The 1 : 1 resonance corresponds to the orthogonal field limit, studied earlier by Cushman & Sadovskif (Cushman & Sadovskif 2000 Physica 142, 166-196). We describe the structure of the 1 : 1 zone, where the system may have monodromy of different kinds, and consider briefly the 1 : 2 zone.</p
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We demonstrate that an integrable approximation to the hydrogen atom in orthogonal electric and mag...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
We return to the Keplerian or n-shell approximation to the hydrogen atom in the presence of weak sta...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We demonstrate that an integrable approximation to the hydrogen atom in orthogonal electric and mag...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
We consider perturbations of the hydrogen atom by sufficiently small homogeneous static electric and...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
The hydrogen atom perturbed by sufficiently small homogeneous static electric and magnetic fields of...
We return to the Keplerian or n-shell approximation to the hydrogen atom in the presence of weak sta...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We study a perturbation of the hydrogen atom by small homogeneous static electric and magnetic field...
We demonstrate that an integrable approximation to the hydrogen atom in orthogonal electric and mag...