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Quantum Fisher information measurement and verification of the quantum Cramér-Rao bound in a solid-state qubit
Physicsnpj Quantum Information

Quantum Fisher information measurement and verification of the quantum Cramér-Rao bound in a solid-state qubit

M. Yu, Y. Liu, et al.

Discover how Min Yu and colleagues achieved near saturation of the quantum Cramér-Rao bound in phase estimation using a nitrogen-vacancy center in diamond. Their innovative approach showcases the potential for precise quantum parameter estimation in complex systems, paving the way for advancements in quantum technologies.... show more
Abstract
The quantum Cramér-Rao bound sets a fundamental limit on the accuracy of unbiased parameter estimation in quantum systems, relating the uncertainty in determining a parameter to the inverse of the quantum Fisher information. We experimentally demonstrate near saturation of the quantum Cramér-Rao bound in the phase estimation of a solid-state spin system, provided by a nitrogen-vacancy center in diamond. This is achieved by comparing the experimental uncertainty in phase estimation with an independent measurement of the related quantum Fisher information. The latter is independently extracted from coherent dynamical responses of the system under weak parametric modulations, without performing any quantum-state tomography. While optimal parameter estimation has already been observed for quantum devices involving a limited number of degrees of freedom, our method offers a versatile and powerful experimental tool to explore the Cramér-Rao bound and the quantum Fisher information in systems of higher complexity, as relevant for quantum technologies.
Publisher
npj Quantum Information
Published On
May 12, 2022
Authors
Min Yu, Yu Liu, Pengcheng Yang, Musang Gong, Qingyun Cao, Shaoliang Zhang, Haibin Liu, Markus Heyl, Tomoki Ozawa, Nathan Goldman, Jianming Cai
Tags
quantum Cramér-Rao boundparameter estimationquantum Fisher informationnitrogen-vacancy centerphase estimationsolid-state spin systemquantum technologies
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