Rydberg dressing of a one-dimensional Bose-Einstein condensate
arXiv:1605.04440 · doi:10.1103/PhysRevA.95.043606
Abstract
We study the influence of Rydberg dressed interactions in a one-dimensional (1D) Bose-Einstein Condensate (BEC). We show that a 1D geometry offers several advantages over 3D for observing BEC Rydberg dressing. The effects of dressing are studied by investigating collective BEC dynamics after a rapid switch-off of the Rydberg dressing interaction. The results can be interpreted as an effective modification of the s-wave scattering length. We include this modification in an analytical model for the 1D BEC, and compare it to numerical calculations of Rydberg dressing under realistic experimental conditions.
5 pages, 3 figures
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- Characterizing the local vectorial electric field near an atom chip using Rydberg state spectroscopy
- Exactly solvable model of two interacting Rydberg-dressed atoms confined in a two-dimensional harmonic trap
- Generation and decoherence of soliton spatial superposition states
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- Density and pseudo-spin rotons in a bilayer of soft-core bosons
- 2D Gapless Topological Superfluids Generated by Pairing Phases