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Tunable coupler for superconducting Xmon qubits: Perturbative nonlinear model

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arxiv 1405.1915 v1 pith:5DAVRL6J submitted 2014-05-08 quant-ph cond-mat.supr-con

Tunable coupler for superconducting Xmon qubits: Perturbative nonlinear model

classification quant-ph cond-mat.supr-con
keywords couplernonlinearitytunablecouplingeffectsjunctionqubitqubits
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study a recently demonstrated design for a high-performance tunable coupler suitable for superconducting Xmon and planar transmon qubits [Y. Chen et al., arXiv:1402.7367]. The coupler circuit uses a single flux-biased Josephson junction and acts as a tunable current divider. We calculate the effective qubit-qubit interaction Hamiltonian by treating the nonlinearity of the qubit and coupler junctions perturbatively. We find that the qubit nonlinearity has two principal effects: The first is to suppress the magnitude of the transverse XX coupling from that obtained in the harmonic approximation by about 15%. The second is to induce a small diagonal ZZ coupling. The effects of the coupler junction nonlinearity are negligible in the parameter regime considered.

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