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Suppression of Qubit Crosstalk in a Tunable Coupling Superconducting Circuit

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arxiv 1810.04182 v2 pith:XIN2ZU4M submitted 2018-10-09 quant-ph

classification quant-ph
keywords crosstalkquantumsuperconductingcircuitcouplerfidelityinteractioniswap
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Parasitic crosstalk in superconducting quantum devices is a leading limitation for quantum gates. We demonstrate the suppression of static ZZ crosstalk in a two-qubit, two-coupler superconducting circuit, where the frequency of a tunable coupler can be adjusted such that the ZZ interaction from each coupler destructively interfere. We verify the crosstalk elimination with simultaneous randomized benchmarking, and use a parametrically activated iSWAP interaction to achieve a Bell state preparation fidelity of 98.5% and a $\sqrt{\textrm{iSWAP}}$ gate fidelity of 94.8% obtained via quantum process tomography.

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