Hydrogen atom is studied as a quantum-classical hybrid system, where the proton is treated as a classical object while the electron is regarded as a quantum object. We use a well known mean-field approach to describe this hybrid hydrogen atom; the resulting dynamics for the electron and the proton is compared to their full quantum dynamics. The electron dynamics in the hybrid description is found to be only marginally different from its full quantum counterpart. The situation is very different for the proton: in the hybrid description, the proton behaves like a free particle; in the fully quantum description, the wave packet center of the proton orbits around the center of mass. Furthermore, we find that the failure to describe the proton d...
The mechanical angular momentum and magnetic moment of the electron and proton spin have been calcul...
The quantum Boltzmann equation governing the evolution of the one-body internal density matrix of an...
In this work the Schrödinger equation of the hydrogen-like atom is analytically solved. Three sets o...
The usual quantum model for the hydrogen atom is a Hamiltonian dynamical system defined over a compl...
Abstract. We study the Hydrogen atom as a quantum mechanical system with a Coulomb like potential, w...
The basic particle electron obeys various theories like electrodynamics, quantum mechanics and speci...
A non-moving electron hydrogen model is proposed, resolving a long standing contradiction (94 years)...
In this paper, the problems existing in the concepts of Planck’s energy element and Einstein’s light...
Many attempts were made to derive with the old quantum theory structures for the hydrogen molecule, ...
The Born and Jordan matrices representing the "coordinates" of the hydrogen atom are calculated. The...
Proton stopping power in hydrogen is calculated using a hybrid method. A two-centre convergent close...
Semiclassical oscillation of the electron through the nucleus of the H atom yields both the exact en...
The application of a classical approach to various quantum problems – the secular perturbation appro...
We present a quantum mechanical, classical and semiclassical study of the energy spectrum of a Rydbe...
The quantum mechanical wave function of an object under a certain potential is determined by the Sch...
The mechanical angular momentum and magnetic moment of the electron and proton spin have been calcul...
The quantum Boltzmann equation governing the evolution of the one-body internal density matrix of an...
In this work the Schrödinger equation of the hydrogen-like atom is analytically solved. Three sets o...
The usual quantum model for the hydrogen atom is a Hamiltonian dynamical system defined over a compl...
Abstract. We study the Hydrogen atom as a quantum mechanical system with a Coulomb like potential, w...
The basic particle electron obeys various theories like electrodynamics, quantum mechanics and speci...
A non-moving electron hydrogen model is proposed, resolving a long standing contradiction (94 years)...
In this paper, the problems existing in the concepts of Planck’s energy element and Einstein’s light...
Many attempts were made to derive with the old quantum theory structures for the hydrogen molecule, ...
The Born and Jordan matrices representing the "coordinates" of the hydrogen atom are calculated. The...
Proton stopping power in hydrogen is calculated using a hybrid method. A two-centre convergent close...
Semiclassical oscillation of the electron through the nucleus of the H atom yields both the exact en...
The application of a classical approach to various quantum problems – the secular perturbation appro...
We present a quantum mechanical, classical and semiclassical study of the energy spectrum of a Rydbe...
The quantum mechanical wave function of an object under a certain potential is determined by the Sch...
The mechanical angular momentum and magnetic moment of the electron and proton spin have been calcul...
The quantum Boltzmann equation governing the evolution of the one-body internal density matrix of an...
In this work the Schrödinger equation of the hydrogen-like atom is analytically solved. Three sets o...