arXiv · 0912.0733
The Perfect Atom: Bound States of Supersymmetric Quantum Electrodynamics
Abstract
We study hydrogen-like atoms in N=1 supersymmetric quantum electrodynamics with an electronic and a muonic family. These atoms are bound states of an anti-muon and an electron or their superpartners. The exchange of a photino converts different bound states into each other. We determine the energy eigenstates and calculate the spectrum to fourth order in the fine structure constant. A difference between these perfect atoms and non-supersymmetric ones is the absence of hyperfine structure. We organize the eigenstates into super multiplets of the underlying symmetry algebra.
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Christopher P. Herzog, Thomas Klose. 2010-06-13. The Perfect Atom: Bound States of Supersymmetric Quantum Electrodynamics. https://doi.org/10.1016/j.nuclphysb.2010.06.004
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