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Suppression of dephasing by qubit motion in superconducting circuits

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arxiv 1509.00122 v1 pith:RC6A34TR submitted 2015-09-01 cond-mat.mes-hall quant-ph

Suppression of dephasing by qubit motion in superconducting circuits

classification cond-mat.mes-hall quant-ph
keywords qubitdephasingmotionprotocolcorrelationslogicalnoisenoises
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We suggest and demonstrate a protocol which suppresses dephasing due to the low-frequency noise by qubit motion, i.e., transfer of the logical qubit of information in a system of $n \geq 2$ physical qubits. The protocol requires only the nearest-neighbor coupling and is applicable to different qubit structures. We further analyze its effectiveness against noises with arbitrary correlations. Our analysis, together with experiments using up to three superconducting qubits, shows that for the realistic uncorrelated noises, qubit motion increases the dephasing time of the logical qubit as $\sqrt{n}$. In general, the protocol provides a diagnostic tool to measure the noise correlations.

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