Fast high fidelity quantum non-demolition qubit readout via a non-perturbative cross-Kerr coupling

Qubit readout is an indispensable element of any quantum information processor. In this work, we experimentally demonstrate a non-perturbative cross-Kerr coupling between a transmon and a polariton mode which enables an improved quantum non-demolition (QND) readout for superconducting qubits. The ne...

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Veröffentlicht in:arXiv.org 2020-02
Hauptverfasser: Dassonneville, R, Ramos, T, Milchakov, V, Planat, L, Dumur, É, oughi, F, Puertas, J, Leger, S, Bharadwaj, K, Delaforce, J, Naud, C, Hasch-Guichard, W, García-Ripoll, J J, Roch, N, Buisson, O
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Sprache:eng
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Zusammenfassung:Qubit readout is an indispensable element of any quantum information processor. In this work, we experimentally demonstrate a non-perturbative cross-Kerr coupling between a transmon and a polariton mode which enables an improved quantum non-demolition (QND) readout for superconducting qubits. The new mechanism uses the same experimental techniques as the standard QND qubit readout in the dispersive approximation, but due to its non-perturbative nature, it maximizes the speed, the single-shot fidelity and the QND properties of the readout. In addition, it minimizes the effect of unwanted decay channels such as the Purcell effect. We observed a single-shot readout fidelity of 97.4% for short 50 ns pulses, and we quantified a QND-ness of 99% for long measurement pulses with repeated single-shot readouts.
ISSN:2331-8422
DOI:10.48550/arxiv.1905.00271