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March 11, 20240 citationsOpen Access

Designing high-fidelity two-qubit gates between fluxonium qubits

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EREmma L. RosenfeldCHConnor T. HannDSDavid Schuster

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Abstract

We take a bottom-up, first-principles approach to design a two-qubit gate between fluxonium qubits for minimal error, speed, and control simplicity. Our proposed architecture consists of two fluxoniums coupled via a linear resonator. Using a linear coupler introduces the possibility of material optimization for suppressing its loss, enables efficient driving of state-selective transitions through its large charge zero point fluctuation, reduces sensitivity to junction aging, and partially mitigates coherent coupling to two-level systems. Crucially, a resonator-as-coupler approach also suggests a clear path to increased connectivity between fluxonium qubits, by reducing capacitive loading when the coupler has a high impedance. After performing analytic and numeric analyses of the circuit Hamiltonian and gate dynamics, we tune circuit parameters to destructively interfere sources of coherent error, revealing an efficient, fourth-order scaling of coherent error with gate duration. For component properties from the literature, we predict an open-system average CZ gate infidelity of 1. 86 10^-4 in 70ns.

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Cite This Study

Rosenfeld et al. (2024) studied this question.

synapsesocial.com/papers/68e74ba6b6db6435876c4896https://doi.org/10.48550/arxiv.2403.07242
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