Physical Review Letters · 2003 · 348 citations · 21 references
EngineeringEmission-induced Self-organizationSoft MatterCollective Friction ForcesNanotribologySpatial Self-organizationOptical PropertiesUltracold AtomBiophysicsPhotonicsQuantum ScienceEffect Strong DampingPhysicsAtomic PhysicsAtomic Self-organizationQuantum OpticSelf-assemblySurface ScienceApplied PhysicsCondensed Matter PhysicsBragg ScatteringInterfacial StudyOptical Trapping
We demonstrate that emission-induced self-organization of two-level atoms can effect strong damping of the sample's center-of-mass motion. When illuminated by far-detuned light, cold cesium atoms assemble into a density grating that efficiently diffracts the incident light into an optical resonator. We observe random phase jumps of pi in the emitted light, confirming spontaneous symmetry breaking in the atomic self-organization. The Bragg diffraction results in a collective friction force with center-of-mass deceleration up to 1000 m/s(2) that is effective even for an open atomic transition.
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Nobel Lecture: The manipulation of neutral particles
Steven Chu · Reviews of Modern Physics · 1998 · 856 citations · Full text
Exponential gain and self-bunching in a collective atomic recoil laser
R. Bonifacio, L. Salvò, L. M. Narducci et al. · Physical Review A · 1994 · 173 citations