Fractional OAM charge ℓ=1.5 induces an optimal 67.5° GKP lattice rotation that reduces error rate 23.9× with <0.2% loss in Fisher information and yields 41% higher metrological capacity.
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Spinmons are introduced as qubits from transmon-Andreev spin entanglement, with coherent control via Zeeman splitting, gates, and flux drive, showing robustness to flux and charge noise.
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OAM-Induced Lattice Rotation Reveals a Fractional Optimum in Fault-Tolerant GKP Quantum Sensing
Fractional OAM charge ℓ=1.5 induces an optimal 67.5° GKP lattice rotation that reduces error rate 23.9× with <0.2% loss in Fisher information and yields 41% higher metrological capacity.
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Coherent control of spinmons
Spinmons are introduced as qubits from transmon-Andreev spin entanglement, with coherent control via Zeeman splitting, gates, and flux drive, showing robustness to flux and charge noise.