Journal of the Optical Society of America B · 2000 · 66 citations · 23 references
PhotonicsDressed-atom ApproachHollow Laser BeamEngineeringPhysicsLaser ScienceOptical PropertiesAtom GuidingApplied PhysicsLaser ApplicationsHollow Optical FibersAtomic PhysicsOptical TrappingHigh-power LasersAtom GuidanceBeam Optic
We present a general theory of atom guiding in a blue-detuned hollow laser beam. Using the dressed-atom approach, we obtain the mean dipole gradient force, the radiation pressure force, and the momentum diffusion coefficients for three-level Λ-type cold atoms. Using Monte Carlo simulation, we calculate the guiding efficiencies and the final velocity distributions of atoms for various conditions. We find that the guiding efficiency depends not only on the intensity and detuning of the guiding hollow beam but also on the atom-guiding direction with respect to the propagation direction of the hollow laser beam. Comparing our analyses with recent experimental results, we find that they are mutually consistent. The results that we present can also be applied to atom guiding by hollow optical fibers.
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Novel Optical Trap of Atoms with a Doughnut Beam
Takahiro Kuga, Yoshio Torii, Noritsugu Shiokawa et al. · Physical Review Letters · 1997 · 829 citations
Laser-Guided Atoms in Hollow-Core Optical Fibers
Michael J. Renn, D. Montgomery, O. Vdovin et al. · Physical Review Letters · 1995 · 302 citations
An electromagnetic mirror for neutral atoms
Richard J. Cook, Richard K. Hill · Optics Communications · 1982 · 228 citations