Quantum coherent tunable coupling of superconducting qubits |
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Authors: | Niskanen A O Harrabi K Yoshihara F Nakamura Y Lloyd S Tsai J S |
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Affiliation: | CREST, Japan Science and Technology Institute, Kawaguchi, Saitama 332-0012, Japan. |
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Abstract: | ![]() To do large-scale quantum information processing, it is necessary to control the interactions between individual qubits while retaining quantum coherence. To this end, superconducting circuits allow for a high degree of flexibility. We report on the time-domain tunable coupling of optimally biased superconducting flux qubits. By modulating the nonlinear inductance of an additional coupling element, we parametrically induced a two-qubit transition that was otherwise forbidden. We observed an on/off coupling ratio of 19 and were able to demonstrate a simple quantum protocol. |
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