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Phonon downconversion to suppress correlated errors in superconducting qubits

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arxiv 2203.06586 v2 pith:3OOGJWQ2 submitted 2022-03-13 quant-ph cond-mat.supr-con

Phonon downconversion to suppress correlated errors in superconducting qubits

classification quant-ph cond-mat.supr-con
keywords qubitsphononschipcorrelatederrorssuperconductingbackgroundchips
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum error correction can preserve quantum information in the presence of local errors, but correlated errors are fatal. For superconducting qubits, high-energy particle impacts from background radioactivity produce energetic phonons that travel throughout the substrate and create excitations above the superconducting ground state, known as quasiparticles, which can poison all qubits on the chip. We use normal metal reservoirs on the chip back side to downconvert phonons to low energies where they can no longer poison qubits. We introduce a pump-probe scheme involving controlled injection of pair-breaking phonons into the qubit chips. We examine quasiparticle poisoning on chips with and without back-side metallization and demonstrate a reduction in the flux of pair-breaking phonons by over a factor of 20. We use a Ramsey interferometer scheme to simultaneously monitor quasiparticle parity on three qubits for each chip and observe a two-order of magnitude reduction in correlated poisoning due to background radiation.

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  1. Measuring quasiparticle dynamics for particle impact reconstruction in a superconducting qubit chip

    quant-ph 2026-04 unverdicted novelty 6.0

    A statistical framework models quasiparticle recombination and trapping in transmon qubits after particle impacts, enabling energy reconstruction of impacts through phonon-linked correlated relaxations that match Mont...