The dependence of the atomic energy levels on a superstrong magnetic field with account of a finite nucleus radius and mass
arXiv:1304.7940 · doi:10.1103/PhysRevD.87.124035
Abstract
The influence of the finiteness of the proton radius and mass on the energies of a hydrogen atom and hydrogen-like ions in a superstrong magnetic field is studied. The finiteness of the nucleus size pushes the ground energy level up leading to a nontrivial dependence of the value of critical nucleus charge on the external magnetic field.
21 pages, 4 figures
References in corpus (7)
- Equation of State of a Dense and Magnetized Fermion System
- Modified Coulomb Law in a Strongly Magnetized Vacuum
- Electric field of a pointlike charge in a strong magnetic field and ground state of a hydrogenlike atom
- Modification of Coulomb law and energy levels of the hydrogen atom in a superstrong magnetic field
- Positronium collapse and the maximum magnetic field in pure QED
- Critical nucleus charge in a superstrong magnetic field: effect of screening
- Dynamical Electron Mass in a Strong Magnetic Field