Scinovex
article Open AccessTop 1% cited

Experimental demonstration of painting arbitrary and dynamic potentials for Bose–Einstein condensates

New Journal of Physics · 2009 · Vol. 11(4) · pp. 043030–043030
K HendersonC RyuC MacCormickM G Boshier

Abstract

There is a pressing need for robust and straightforward methods to create potentials for trapping Bose-Einstein condensates which are simultaneously dynamic, fully arbitrary, and sufficiently stable to not heat the ultracold gas. We show here how to accomplish these goals, using a rapidly-moving laser beam that "paints" a time-averaged optical dipole potential in which we create BECs in a variety of geometries, including toroids, ring lattices, and square lattices. Matter wave interference patterns confirm that the trapped gas is a condensate. As a simple illustration of dynamics, we show that the technique can transform a toroidal condensate into a ring lattice and back into a toroid. The technique is general and should work with any sufficiently polarizable low-energy particles.

Cold Atom Physics and Bose-Einstein CondensatesStrong Light-Matter InteractionsMechanical and Optical ResonatorsMatter waveToroidOptical latticeTrappingDipoleLattice (music)Work (physics)PolarizabilityRing (chemistry)
Citations
461
FWCI
20.90
field-weighted impact
References
33
Percentile
100%
vs. same field & year
Citations per year
References
Bose-Einstein Condensation in a Gas of Sodium Atoms
Physical Review Letters · 1995 · 5,417 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.