Energy shifts of Rydberg atoms due to patch fields near metal surfaces
arXiv:1008.1533 · doi:10.1103/PhysRevA.83.032902
Abstract
The statistical properties of patch electric fields due to a polycrystalline metal surface are calculated. The fluctuations in the electric field scale like 1/z^2, when z >> w, where z is the distance to the surface, and w is the characteristic length scale of the surface patches. For typical thermally evaporated gold surfaces these field fluctuations are comparable to the image field of an elementary charge, and scale in the same way with distance to the surface. Expressions for calculating the statistics of the inhomogeneous broadening of Rydberg atom energies due to patch electric fields are presented. Spatial variations in the patch fields over the Rydberg orbit are found to be insignificant.
7 pages, 2 figures, Revised version contains an illustrative scanning electron microscope image
References in corpus (6)
- Reversible state transfer between superconducting qubits and atomic ensembles
- Spatially Resolved Excitation of Rydberg Atoms and Surface Effects on an Atom Chip
- Measuring Electric Fields From Surface Contaminants with Neutral Atoms
- Thermal Casimir-Polder shifts in Rydberg atoms near metallic surfaces
- Trapping and coherent manipulation of a Rydberg atom on a microfabricated device: a proposal
- Electronic Structure of Atoms in Magnetic Quadrupole Traps
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