Optics Letters · 2007 · 10 citations · 12 references
Quantum SciencePhotonicsQuantum PhotonicsFew Ultraslow ModesEngineeringPhysicsAtomic Bose-einstein CondensateNatural SciencesQuantum OpticWave OpticApplied PhysicsUltraslow Light PulsesCavity QedUltracold AtomQuantum EntanglementBose-einstein CondensationQuantum OpticsUltraslow Optical Waveguiding
We investigate waveguiding of ultraslow light pulses in an atomic Bose-Einstein condensate. We show that under the conditions of off-resonant electromagnetically induced transparency, waveguiding with a few ultraslow modes can be realized. The number of modes that can be supported by the condensate can be controlled by means of experimentally accessible parameters. Propagation constants and the mode conditions are determined analytically using a Wentzel-Kramers-Brillouin analysis. Mode profiles are found numerically.
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Electromagnetically Induced Transparency
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