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Heisenberg-scaling measurement protocol for analytic functions with quantum sensor networks
Kevin Qian1,2,3, Zachary Eldredge1,2, Wenchao Ge4
1Joint Quantum Institute, NIST/University of Maryland, College Park, Maryland 20742, USA.
Abstract:
We generalize past work on quantum sensor networks to show that, for d input parameters, entanglement can yield a factor O(d) improvement in mean-squared error when estimating an analytic function of these parameters. We show that the protocol is optimal for qubit sensors, and we conjecture an optimal protocol for photons passing through interferometers. Our protocol is also applicable to continuous variable measurements, such as one quadrature of a field operator. We outline a few potential applications, including calibration of laser operations in trapped ion quantum computing.
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