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Quantum Foundations
Transport-enabled entangling gate for trapped ions
arXiv
Authors: Holly N. Tinkey, Craig R. Clark, Brian C. Sawyer, Kenton R. Brown
Year
2021
Paper ID
61706
Status
Preprint
Abstract Read
~2 min
Abstract Words
118
Citations
N/A
Abstract
We implement a two-qubit entangling Mølmer-Sørensen interaction by transporting two co-trapped 40Ca+ ions through a stationary, bichromatic optical beam within a surface-electrode Paul trap. We describe a procedure for achieving a constant Doppler shift during the transport which uses fine temporal adjustment of the moving confinement potential. The fixed interaction duration of the ions transported through the laser beam as well as the dynamically changing ac Stark shift require alterations to the calibration procedures used for a stationary gate. We use the interaction to produce Bell states with fidelities commensurate to those of stationary gates performed in the same system. This result establishes the feasibility of actively incorporating ion transport into quantum information entangling operations.
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- We implement a two-qubit entangling Mølmer-Sørensen interaction by transporting two co-trapped ^40Ca^+ ions through a stationary, bichromatic optical beam within a...
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