Energy spectrum of the ground state of a two dimensional relativistic hydrogen atom in the presence of a constant magnetic field

Physics – Condensed Matter – Mesoscale and Nanoscale Physics

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Scientific paper

10.1142/S0217984903006360

We compute the energy spectrum of the ground state of a 2D Dirac electron in the presence of a Coulomb potential and a constant magnetic field perpendicular to the plane where the the electron is confined. With the help of a mixed-basis variational method we compute the wave function and the energy level and show how it depends on the magnetic field strength. We compare the results with those obtained numerically as well as in the non relativistic limit.

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