Probing beyond the laser coherence time in optical clock comparisons
classification
⚛️ physics.atom-ph
quant-ph
keywords
comparisonslasermeasurementprotocolsclockcoherencedevelopfrequency
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We develop differential measurement protocols that circumvent the laser noise limit in the stability of optical clock comparisons by synchronous probing of two clocks using phase-locked local oscillators. This allows for probe times longer than the laser coherence time, avoids the Dick effect, and supports Heisenberg-limited measurement precision. We present protocols for such frequency comparisons and develop numerical simulations of the protocols with realistic noise sources. These methods provide a route to reduce frequency ratio measurement durations by more than an order of magnitude.
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