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Superconducting qubits can be coupled and addressed as trapped ions

Yu-xi Liu, L. F. Wei, J. R. Johansson, J. S. Tsai, Franco Nori

DOI 10.1103/PhysRevB.76.144518 · Physical Review B

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Abstract

Exploiting the intrinsic nonlinearity of superconducting Josephson junctions, we propose a scalable circuit with superconducting qubits (SCQs) which is very similar to the successful one now being used for trapped ions. The SCQs are coupled to the “vibrational” mode provided by a superconducting LC circuit or its equivalent (e.g., a superconducting quantum interference device). Both single-qubit rotations and qubit-LC-circuit couplings and/or decouplings can be controlled by the frequencies of the time-dependent magnetic fluxes. The circuit is scalable since the qubit-qubit interactions, mediated by the LC circuit, can be selectively performed, and the information transfer can be realized in a controllable way.

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