A code-agnostic hybrid rotation protocol using a qubit ancilla and controlled-Fourier gates suppresses bosonic thermal and displacement noise quadratically while preserving high success probability.
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Loss-induced phases in auxiliary cavities create asymmetric interference, yielding tunable nonreciprocal couplings and entanglement between remote transmon qubits.
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Code-agnostic bosonic noise suppression with hybrid rotations
A code-agnostic hybrid rotation protocol using a qubit ancilla and controlled-Fourier gates suppresses bosonic thermal and displacement noise quadratically while preserving high success probability.
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Loss-induced quantum nonreciprocity and entanglement in superconducting qubits
Loss-induced phases in auxiliary cavities create asymmetric interference, yielding tunable nonreciprocal couplings and entanglement between remote transmon qubits.