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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3 Pith papers cite this work. Polarity classification is still indexing.
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quant-ph 3years
2026 3representative citing papers
Energy modeling and parameter optimization for cat-qubit superconducting quantum computers performing semiclassical QFT with error correction indicates an energetic advantage over classical systems for more than 26 qubits under cryogenic assumptions.
Time-optimal control produces Fock and Schrödinger cat states in light-matter systems at unit fidelity with lower energetic cost and noise robustness than adiabatic methods.
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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Unveiling Energetic Advantage in Superconducting Cat-Qubits Quantum Computation
Energy modeling and parameter optimization for cat-qubit superconducting quantum computers performing semiclassical QFT with error correction indicates an energetic advantage over classical systems for more than 26 qubits under cryogenic assumptions.
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Time optimal quantum state engineering
Time-optimal control produces Fock and Schrödinger cat states in light-matter systems at unit fidelity with lower energetic cost and noise robustness than adiabatic methods.