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Microwave-based Arbitrary CPHASE Gates for Transmon Qubits

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arxiv 1903.00969 v3 pith:GHRRAM6A submitted 2019-03-03 quant-ph cond-mat.mes-hall

Microwave-based Arbitrary CPHASE Gates for Transmon Qubits

classification quant-ph cond-mat.mes-hall
keywords cphasegatesquantumarbitraryevolutionmicrowave-basedqubitssimulation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Superconducting transmon qubits are of great interest for quantum computing and quantum simulation. A key component of quantum chemistry simulation algorithms is breaking up the evolution into small steps, which naturally leads to the need for non-maximally entangling, arbitrary CPHASE gates. Here we design such microwave-based gates using an analytically solvable approach leading to smooth, simple pulses. We use the local invariants of the evolution operator in $SU(4)$ to develop a method of constructing pulse protocols, which allows for the continuous tuning of the phase. We find CPHASE fidelities of more than $0.999$ and gate times as low as $100\text{ ns}$.

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