Coherent Control of Trapped-Ion Qubits with Localized Electric Fields

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Abstract

We present a new method for coherent control of trapped ion qubits in separate interaction regions of a multizone trap by simultaneously applying an electric field and a spin-dependent gradient. Both the phase and amplitude of the effective single-qubit rotation depend on the electric field, which can be localized to each zone. We demonstrate this interaction on a single ion using both laser-based and magnetic-field gradients in a surface-electrode ion trap, and measure the localization of the electric field.

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Srinivas, R., Löschnauer, C. M., Malinowski, M., Hughes, A. C., Nourshargh, R., Negnevitsky, V., … Ballance, C. J. (2023). Coherent Control of Trapped-Ion Qubits with Localized Electric Fields. Physical Review Letters, 131(2). https://doi.org/10.1103/PhysRevLett.131.020601

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