Abstract
We advocate a Bayesian approach to optimal quantum frequency estimation - an important issue for future quantum enhanced atomic clock operation. The approach provides a clear insight into the interplay between decoherence and the extent of prior knowledge in determining the optimal interrogation times and optimal estimation strategies. We propose a general framework capable of describing local oscillator noise as well as additional collective atomic dephasing effects. For a Gaussian noise, the average Bayesian cost can be expressed using the quantum Fisher information. Thus we establish a direct link between the two, often competing, approaches to quantum estimation theory.
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Macieszczak, K., Fraas, M., & Demkowicz-Dobrzański, R. (2014). Bayesian quantum frequency estimation in presence of collective dephasing. New Journal of Physics, 16. https://doi.org/10.1088/1367-2630/16/11/113002
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