arXiv · 1905.03765
Non-Relativistic and Relativistic Equations for the Kratzer Potential plus a Dipole in 2D Systems
Abstract
In this work, we study the wave equations in 2D Euclidian space for a new non-central potential consisting of a Kratzer term and a dipole term. For Schrodinger equation, we obtain the analytical expressions of the energies and the wave functions of the system. For Klein-Gordon and Dirac equations, we do the study in both spin and pseudo-spin symmetries to get the eigenfunctions and the eingenvalues. Then we study the dependence of energies on the radial moment D_{r} and the angular moment D_{theta}. We find that the D_{theta} term tends to dissociate the system, and thus counteracts the Coulomb binding effect, and that the D_{r} term can either amplify or decrease this effect according to its sign.
Explore related subjects
Keep this discovery
M. Heddar, M. Moumni, M. Falek. 2019-05-09. Non-Relativistic and Relativistic Equations for the Kratzer Potential plus a Dipole in 2D Systems. https://doi.org/10.1088/1402-4896%2Fab3501
Cite the original work for its findings. Save a collection to share your selection of sources.