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Measurement of correlated charge noise in superconducting qubits at an underground facility

Abstract The charge environment of superconducting qubits may be studied through the introduction of controlled, quantified amounts of ionizing radiation. We measure space- and time-correlated charge jumps on a four-qubit device, operating 107 meters below the Earth’s surface in a low-radiation, cry...

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Bibliografische gegevens
Hoofdauteurs: G. Bratrud, S. Lewis, K. Anyang, A. Colón Cesaní, T. Dyson, H. Magoon, D. Sabhari, G. Spahn, G. Wagner, R. Gualtieri, N. A. Kurinsky, R. Linehan, R. McDermott, S. Sussman, D. J. Temples, S. Uemura, C. Bathurst, G. Cancelo, R. Chen, A. Chou, I. Hernandez, M. Hollister, L. Hsu, C. James, K. Kennard, R. Khatiwada, P. Lukens, V. Novati, N. Raha, S. Ray, R. Ren, A. Rodriguez, B. Schmidt, K. Stifter, J. Yu, D. Baxter, E. Figueroa-Feliciano, D. Bowring
Formaat: Artigo
Taal:Inglês
Gepubliceerd in: Nature Portfolio 2025-11-01
Reeks:Nature Communications
Online toegang:https://doi.org/10.1038/s41467-025-63724-4
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