Exponential localization of hydrogen-like atoms in relativistic quantum electrodynamics
Abstract
We consider two different models of a hydrogenic atom in a quantized electromagnetic field that treat the electron relativistically. The first one is a no-pair model in the free picture, the second one is given by the semi-relativistic Pauli-Fierz Hamiltonian. We prove that the no-pair operator is semi-bounded below and that its spectral subspaces corresponding to energies below the ionization threshold are exponentially localized. Both results hold true, for arbitrary values of the fine-structure constant, , and the ultra-violet cut-off, , and for all nuclear charges less than the critical charge without radiation field, . We obtain similar results for the semi-relativistic Pauli-Fierz operator, again for all values of and and for nuclear charges less than .
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Cite
@article{arxiv.0904.3083,
title = {Exponential localization of hydrogen-like atoms in relativistic quantum electrodynamics},
author = {Oliver Matte and Edgardo Stockmeyer},
journal= {arXiv preprint arXiv:0904.3083},
year = {2011}
}
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37 pages