Publication | Open Access
High-bandwidth transfer of phase stability through a fiber frequency comb
29
Citations
27
References
2015
Year
Quantum PhotonicsEngineeringLaser ScienceOptical Transmission SystemLaser ApplicationsHigh-power LasersFiber-optic CommunicationQuantum EngineeringPhase LockingQuantum ComputingFiber LaserNm Master LaserOptical PumpingPhotonicsQuantum SciencePhysicsFrequency CombsFiber OpticApplied PhysicsTransfer-oscillator LockingFiber Frequency CombFibre AmplifierOptical Logic Gate
We demonstrate phase locking of a 729 nm diode laser to a 1542 nm master laser via an erbium-doped-fiber frequency comb, using a transfer-oscillator feedforward scheme which suppresses the effect of comb noise in an unprecedented 1.8 MHz bandwidth. We illustrate its performance by carrying out coherent manipulations of a trapped calcium ion with 99 % fidelity even at few-μs timescales. We thus demonstrate that transfer-oscillator locking can provide sufficient phase stability for high-fidelity quantum logic manipulation even without pre-stabilization of the slave diode laser.
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