Postselected sBs stabilization plus repeated finite-energy measurements yield single-mode GKP SPAM error below 10^{-3} (two orders better than prior art) while remaining compatible with autonomous QEC.
Campagne-Ibarcq, A
3 Pith papers cite this work. Polarity classification is still indexing.
fields
quant-ph 3years
2026 3representative citing papers
Two feedforward DNNs map target cavity EM observables and qubit–cavity parameters (g, νq, α) to candidate SRF and transmon geometries that re-simulate to within ~5% and ~2%.
Programmable nonlinear bosonic circuits can deterministically produce phased-comb states that serve as a scalable bosonic quantum error-correcting code with near-optimal performance against boson loss.
citing papers explorer
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Quantum error correction of a grid-state qubit with state preparation and measurement errors below $10^{-3}$
Postselected sBs stabilization plus repeated finite-energy measurements yield single-mode GKP SPAM error below 10^{-3} (two orders better than prior art) while remaining compatible with autonomous QEC.
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Neural-Network Inverse Design of SRF Cavities and Transmons for Bosonic Quantum Computation
Two feedforward DNNs map target cavity EM observables and qubit–cavity parameters (g, νq, α) to candidate SRF and transmon geometries that re-simulate to within ~5% and ~2%.
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Deterministic generation of grid states with programmable nonlinear bosonic circuits
Programmable nonlinear bosonic circuits can deterministically produce phased-comb states that serve as a scalable bosonic quantum error-correcting code with near-optimal performance against boson loss.