arXiv · 1106.6275
Interaction-induced stabilization of circular Rydberg atoms
Abstract
We discuss a candidate solution for the controlled trapping and manipulation of two individual Rydberg atoms by means of a magnetic Ioffe-Pritchard trap that is superimposed by a constant electric field. In such a trap Rydberg atoms experience a permanent electric dipole moment that can be of the order of several hundred Debye. The interplay of electric dipolar repulsion and three dimensional magnetic confinement leads to a well controllable equilibrium configuration with tunable trap frequency and atomic distance. We thoroughly investigate the trapping potentials and analyze the interaction-induced stabilization of two such trapped Rydberg atoms. Possible limitations and collapse scenarios are discussed.
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Bernd Hezel, Michael Mayle, Peter Schmelcher. 2011-12-09. Interaction-induced stabilization of circular Rydberg atoms. https://doi.org/10.1103/physreva.84.063402
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