Relativistic Hydrogen-Like Atom on a Noncommutative Phase Space
Mathematical Physics
2012-02-14 v1 math.MP
Abstract
The energy levels of hydrogen-like atom on a noncommutative phase space were studied in the framework of relativistic quantum mechanics. The leading order corrections to energy levels 2S_{1/2}, 2P_{1/2} and 2P_{3/2} were obtained by using the \theta and the \bar\theta modified Dirac Hamiltonian of hydrogen-like atom on a noncommutative phase space. The degeneracy of the energy levels 2P_{1/2} and 2P_{3/2} were removed completely by \theta-correction. And the \bar\theta-correction shifts these energy levels.
Cite
@article{arxiv.1202.2522,
title = {Relativistic Hydrogen-Like Atom on a Noncommutative Phase Space},
author = {Huseyin Masum and Sayipjamal Dulat and Mutallip Tohti},
journal= {arXiv preprint arXiv:1202.2522},
year = {2012}
}
Comments
7 pages, 1 figure