Scrambling dynamics in a nuclear spin system produce correlations yielding 33(2) dB signal enhancement and 18(1) dB metrological gain with 40(3) μrad phase sensitivity.
A universal protocol for quantum-enhanced sensing via information scrambling
2 Pith papers cite this work. Polarity classification is still indexing.
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Scrambling on a 10-qubit superconducting processor produces genuine multipartite entanglement that yields quantum-enhanced sensing with sensitivity scaling consistent with half the Heisenberg limit.
citing papers explorer
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Correlation-enhanced metrology from scrambling dynamics in a solid-state spin system
Scrambling dynamics in a nuclear spin system produce correlations yielding 33(2) dB signal enhancement and 18(1) dB metrological gain with 40(3) μrad phase sensitivity.
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Quantum-Enhanced Sensing Enabled by Scrambling-Induced Genuine Multipartite Entanglement
Scrambling on a 10-qubit superconducting processor produces genuine multipartite entanglement that yields quantum-enhanced sensing with sensitivity scaling consistent with half the Heisenberg limit.