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Implementation of a Toffoli Gate with Superconducting Circuits

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arxiv 1108.3966 v3 pith:RNXWBD36 submitted 2011-08-19 quant-ph cond-mat.mes-hall

classification quant-phcond-mat.mes-hall
keywords gatetoffoliquantumcircuitsimplementationprocesssuperconductingtransmon
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

The quantum Toffoli gate allows universal reversible classical computation. It is also an important primitive in many quantum circuits and quantum error correction schemes. Here we demonstrate the realization of a Toffoli gate with three superconducting transmon qubits coupled to a microwave resonator. By exploiting the third energy level of the transmon qubit, the number of elementary gates needed for the implementation of the Toffoli gate, as well as the total gate time can be reduced significantly in comparison to theoretical proposals using two-level systems only. We characterize the performance of the gate by full process tomography and Monte Carlo process certification. The gate fidelity is found to be $68.5\pm0.5$%.

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  1. Quantum bits with Josephson junctions

    quant-ph 2019-08 unverdicted

    A review chapter explaining how Josephson junctions are used to build quantum bits, their circuits, and their applications to quantum computing and quantum optics.

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