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Bandwidth and visibility improvement in detection of a weak signal using mode entanglement and swapping

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arxiv 2211.10403 v1 pith:ZNNX62WM submitted 2022-11-18 quant-ph physics.ins-det

Bandwidth and visibility improvement in detection of a weak signal using mode entanglement and swapping

classification quant-ph physics.ins-det
keywords accelerationmodevisibilityachievedaxionbandwidthresonatorsearch
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum fluctuations constitute the primary noise barrier limiting cavity-based axion dark matter searches. In an experiment designed to mimic a real axion search, we employ a quantum-enhanced sensing technique to detect a synthetic axion-like microwave tone at an unknown frequency weakly coupled to a resonator, demonstrating a factor of 5.6 acceleration relative to a quantum-limited search for the same tone. The acceleration comes from increases to both the visibility bandwidth and the peak visibility of a detector. This speedup is achieved by dynamically coupling the resonator mode to a second (readout) mode with balanced swapping and two-mode squeezing interactions. A small fractional imbalance between the two interaction rates yields further scan rate enhancement and we demonstrate that an 8-fold acceleration can be achieved.

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Cited by 1 Pith paper

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    hep-ph 2026-01 conditional novelty 6.0

    A 9-cell microwave cavity's 18 modes can act as a synthetic detector array that reconstructs the direction, polarization, and chirp of a high-frequency gravitational-wave signal.