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Universal flux-based control of a -SQUID

Abstract

We describe a protocol for the universal control of non-ideal -periodic superconducting qubits. Our proposal relies on a -SQUID: a superconducting loop formed by two -periodic circuit elements, with an external magnetic flux threading the circuit. The system exhibits an extensive sweet spot around half-flux where residual -periodic Cooper pair tunneling is highly suppressed. We demonstrate that universal single-qubit operations can be realised by tuning the flux adiabatically and diabatically within this broad sweet spot. We also assess how residual -periodicity in -SQUIDs impacts holonomic phase gates.