Publication | Open Access
Laser frequency stabilization to excited state transitions using electromagnetically induced transparency in a cascade system
109
Citations
24
References
2009
Year
Quantum PhotonicsEngineeringLaser ScienceLaser ApplicationsLaser PhysicsHigh-power LasersCascade SystemOptical PropertiesLaser StabilizationLaser Frequency StabilizationOptical PumpingPhotonicsPhysicsRelativistic Laser-matter InteractionElectro-optics DeviceExcited State TransitionsLaser PhotochemistryApplied PhysicsLaser-matter InteractionTunable Lasers
We demonstrate laser frequency stabilization to excited state transitions using cascade electromagnetically induced transparency. Using a room temperature Rb vapor cell as a reference, we stabilize a first diode laser to the D2 transition and a second laser to a transition from the intermediate 5P3/2 state to a highly excited state with principal quantum number n=19–70. A combined laser linewidth of 280±50 kHz over a 100 μs time period is achieved. This method may be applied generally to any cascade system and allows laser stabilization to an atomic reference in the absence of a direct absorption signal.
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