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Arbitrary quantum circuits on a fully integrated two-qubit computation register for a trapped-ion quantum processor

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arxiv 2403.19809 v2 pith:4AHWYXBC submitted 2024-03-28 quant-ph

Arbitrary quantum circuits on a fully integrated two-qubit computation register for a trapped-ion quantum processor

classification quant-ph
keywords quantumaddressingarbitraryregistertwo-qubitcircuitsimplementedmicrowave
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report on the implementation of arbitrary circuits on a universal two-qubit register that can act as the computational module in a trapped-ion quantum computer based on the quantum charge-coupled device architecture. A universal set of quantum gates is implemented on a two-ion Coulomb crystal of $^9$Be$^+$ ions using only chip-integrated microwave addressing. Individual-ion addressing is implemented using microwave micromotion sideband transitions; we obtain upper limits on addressing cross-talk in the register. Arbitrary two-qubit operations are characterized using the cycle benchmarking protocol.

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