Publication | Closed Access
Self-Organization, Broken Symmetry, and Lasing in an Atomic Vapor: The Interdependence of Gratings and Gain
84
Citations
14
References
1996
Year
Transient GratingQuantum PhotonicsGain-lasing MechanismEngineeringWave PumpOptical PropertiesMaterials SciencePhotonicsFree-electron LasersAtomic VaporOptical PumpingBroken SymmetryPhysicsAtomic PhysicsDoppler-broadened Atomic VaporOptical PhysicApplied PhysicsLaser-matter InteractionOptoelectronics
We describe a novel optical gain mechanism observed in a strongly driven Doppler-broadened atomic vapor. Gain and self-stabilizing laser oscillations are observed in a direction which is counterpropagating with respect to the traveling wave pump. Using Bragg diffraction, we show that the underlying gain-lasing mechanism is directly tied to a spontaneously formed optical wavelength grating. We suggest that this grating arises from a self-organization or self-bunching of the atoms, an effect which is mediated by recoil just as in the free electron laser.
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