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Mode Locking of Electron Spin Coherences in Singly Charged Quantum Dots
441
Citations
15
References
2006
Year
EngineeringMany-body Quantum PhysicTopological Quantum StateQuantum ComputingElectron Spin CoherencesQuantum DotsQuantum EntanglementQuantum SciencePhysicsQuantum DevicePeriodic TrainTopological PhaseSpintronicsNatural SciencesMode LockingApplied PhysicsCondensed Matter PhysicsFast DephasingQuantum Photonic DeviceCoherent ProcessFaraday Rotation
The fast dephasing of electron spins in an ensemble of quantum dots is detrimental for applications in quantum information processing. We show here that dephasing can be overcome by using a periodic train of light pulses to synchronize the phases of the precessing spins, and we demonstrate this effect in an ensemble of singly charged (In,Ga)As/GaAs quantum dots. This mode locking leads to constructive interference of contributions to Faraday rotation and presents potential applications based on robust quantum coherence within an ensemble of dots.
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