We present a semiclassical study of the energy spectrum of a Rydberg hydrogen atom in the instantaneous van der Waals potential. The results are in good agreement with those obtained by the first-order quantum perturbation theory. Both the semiclassical and the quantum calculations show that vibrational energy levels disappear when the magnetic quantum number |m| increases. This fact is well explained in the framework of classical dynamics of this system for which the pitchfork bifurcation takes place at critical value |m|/n =5/7. © 2001 Elsevier Science B.V
The vibrational motion of highly excited molecules is discussed in terms of exact quantum and classi...
An asymptotic expression for the van-der-Waals constant C6(n) ≈ –0.03n12Kp(x) is derived for the lon...
Subharmonic resonance behaviors are investigated for the classical hydrogen atom, with classical rad...
We present a quantum mechanical, classical and semiclassical study of the energy spectrum of a Rydbe...
We present a quantum mechanical, classical and semiclassical study of the energy spectrum of a Rydbe...
The quantum manifestations of chaos in the hydrogen atom in a generalized van der Waals potential, w...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
Hydrogen-like atoms are two-particle systems governed with spherically symmetric potentials, their n...
Bifurcations or related topics in two quantum systems are studied. The first system is a hydrogen i...
We have calculated the energy spectrum of a highly excited atom in parallel electric and magnetic fi...
We examine the energy spectrum of hydrogen in weak near-perpendicular electric and magnetic fields u...
We study the role of Rydberg bound-states and continuum levels in the field-induced electronic dynam...
In the framework of classical mechanics, a study of the hydrogen atom in the presence of parallel el...
Abstract. A remarkable property of Rydberg atoms is the possibility to create molecules formed by on...
By using the closed-orbit theory including the effect of Coulomb scattering together with an electr...
The vibrational motion of highly excited molecules is discussed in terms of exact quantum and classi...
An asymptotic expression for the van-der-Waals constant C6(n) ≈ –0.03n12Kp(x) is derived for the lon...
Subharmonic resonance behaviors are investigated for the classical hydrogen atom, with classical rad...
We present a quantum mechanical, classical and semiclassical study of the energy spectrum of a Rydbe...
We present a quantum mechanical, classical and semiclassical study of the energy spectrum of a Rydbe...
The quantum manifestations of chaos in the hydrogen atom in a generalized van der Waals potential, w...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
Hydrogen-like atoms are two-particle systems governed with spherically symmetric potentials, their n...
Bifurcations or related topics in two quantum systems are studied. The first system is a hydrogen i...
We have calculated the energy spectrum of a highly excited atom in parallel electric and magnetic fi...
We examine the energy spectrum of hydrogen in weak near-perpendicular electric and magnetic fields u...
We study the role of Rydberg bound-states and continuum levels in the field-induced electronic dynam...
In the framework of classical mechanics, a study of the hydrogen atom in the presence of parallel el...
Abstract. A remarkable property of Rydberg atoms is the possibility to create molecules formed by on...
By using the closed-orbit theory including the effect of Coulomb scattering together with an electr...
The vibrational motion of highly excited molecules is discussed in terms of exact quantum and classi...
An asymptotic expression for the van-der-Waals constant C6(n) ≈ –0.03n12Kp(x) is derived for the lon...
Subharmonic resonance behaviors are investigated for the classical hydrogen atom, with classical rad...