Flux qubits with long coherence times for hybrid quantum circuits

We present measurements of superconducting flux qubits embedded in a three dimensional copper cavity. The qubits are fabricated on a sapphire substrate and are measured by coupling them inductively to an on-chip superconducting resonator located in the middle of the cavity. At their flux-insensitive...

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Veröffentlicht in:Physical review letters 2014-09, Vol.113 (12), p.123601-123601, Article 123601
Hauptverfasser: Stern, M, Catelani, G, Kubo, Y, Grezes, C, Bienfait, A, Vion, D, Esteve, D, Bertet, P
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Sprache:eng
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Zusammenfassung:We present measurements of superconducting flux qubits embedded in a three dimensional copper cavity. The qubits are fabricated on a sapphire substrate and are measured by coupling them inductively to an on-chip superconducting resonator located in the middle of the cavity. At their flux-insensitive point, all measured qubits reach an intrinsic energy relaxation time in the 6-20  μs range and a pure dephasing time comprised between 3 and 10  μs. This significant improvement over previous works opens the way to the coherent coupling of a flux qubit to individual spins.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.113.123601