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Optomechanical parameter estimation

We propose a statistical framework for the problem of parameter estimation from a noisy optomechanical system. The Cramér-Rao lower bound on the estimation errors in the long-time limit is derived and compared with the errors of radiometer and expectation-maximization (EM) algorithms in the estimation of the force noise power. When applied to experimental data, the EM estimator is found to have the lowest error and follow the Cramér-Rao bound most closely. Our analytic results are envisioned to be valuable to optomechanical experiment design, while the EM algorithm, with its ability to estimate most of the system parameters, is envisioned to be useful for optomechanical sensing, atomic magnetometry, and fundamental tests of quantum mechanics.

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Optomechanical parameter estimation7 visible / 7 total nodes / 12 links
Co-authorshipCo-authorshipCo-authorshipCo-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipAuthorshipTopic signalTopic signalWOptomechanical parameter estima...preprint / 2013AShan Zheng AngResearcherAGlen I. HarrisResearcherAWarwick P. BowenResearcherAMankei TsangResearcherTquant-ph17817 worksTphysics.optics7109 works
PaperSignal 106 links

Optomechanical parameter estimation

preprint / 2013

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