English

Proposal for erasure conversion in integer fluxonium qubits

Quantum Physics 2026-03-24 v1

Abstract

We propose an erasure conversion scheme on the ef|e\rangle-|f\rangle and gf|g\rangle-|f\rangle qubits in integer fluxonium qubits (IFQs), which are both first-order insensitive to 1/f1/f flux noise. The ef|e\rangle-|f\rangle transition is identical to that of a usual fluxonium qubit and hence is expected to have excellent coherence time, while the gf|g\rangle-|f\rangle transition is additionally protected from the energy relaxation by the parity symmetry. The dominant error in both qubits arises due to the energy relaxation: from e|e\rangle to g|g\rangle in the efe\text{--}f qubit and from f|f\rangle to e|e\rangle in the gfg\text{--}f qubit. Such errors can be treated as erasure events, and their efficient detection improves the performance of quantum error-correcting codes. We consider a protocol for such erasure conversion based on the dispersive readout. Our main finding is that, with proper circuit parameter choice, carefully designed gate sets, and the integration of erasure conversion, IFQs promise high effective coherence times.

Cite

@article{arxiv.2603.21003,
  title  = {Proposal for erasure conversion in integer fluxonium qubits},
  author = {Jiakai Wang and Raymond A. Mencia and Vladimir E. Manucharyan and Maxim G. Vavilov},
  journal= {arXiv preprint arXiv:2603.21003},
  year   = {2026}
}
R2 v1 2026-07-01T11:31:49.155Z