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Robust trapped-ion quantum logic gates by continuous dynamical decoupling

Abstract

We introduce a scheme that combines phonon-mediated quantum logic gates in trapped ions with the benefits of continuous dynamical decoupling. We demonstrate theoretically that a strong driving of the qubit decouples it from external magnetic-field noise, enhancing the fidelity of two-qubit quantum gates. Moreover, the scheme does not require ground-state cooling, and is inherently robust to undesired ac Stark shifts. The underlying mechanism can be extended to a variety of other systems where a strong driving protects the quantum coherence of the qubits without compromising the two-qubit couplings. © 2012 American Physical Society

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Institutionelles Repositorium der Leibniz Universität Hannover

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Last time updated on 18/04/2018

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