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    Quantum-Enhanced Parameter Estimation in Multilevel Systems: Experimental Verification in a Superconducting Qutrit Sensor

    Sai Li1,2,*, Yuan-Ke Zhu1,*, Wei-Xin Zhang1,*, De-Jian Pan1, Wen-Cui Liao1, Qing-Xian Lv1,2, Hai-Feng Yu3,4, Yang Yu5,6,4, Zheng-Yuan Xue1,2,4,† et al.

    Hui Yan1,2,4,‡ and Shi-Liang Zhu1,2,4,7,§

    • 1Key Laboratory of Atomic and Subatomic Structure and Quantum Control (Ministry of Education), Guangdong Basic Research Center of Excellence for Structure and Fundamental Interactions of Matter, and School of Physics, South China Normal University, Guangzhou 510006, China
    • 2Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, Guangdong-Hong Kong Joint Laboratory of Quantum Matter, and Frontier Research Institute for Physics, South China Normal University, Guangzhou 510006, China
    • 3Beijing Key Laboratory of Fault-Tolerant Quantum Computing, Beijing Academy of Quantum Information Sciences, Beijing 100193, China
    • 4Hefei National Laboratory, Hefei 230088, China
    • 5National Laboratory of Solid State Microstructures, School of Physics, Nanjing University, Nanjing 210093, China
    • 6Shishan Laboratory, Suzhou Campus of Nanjing University, Suzhou 215163, China
    • 7Quantum Science Center of Guangdong-Hong Kong-Macao Greater Bay Area, Shenzhen, China

    • *These authors contributed equally to this work.
    • †Contact author: zyxue83@163.com
    • ‡Contact author: yanhui@scnu.edu.cn
    • §Contact author: slzhu@scnu.edu.cn

    Phys. Rev. Lett. 135, 200802 – Published 13 November, 2025

    DOI: https://doi.org/10.1103/g1fd-pfvt

    Abstract

    As a cornerstone of advanced quantum techniques, parameter estimation is fundamental to precision measurement in physics. Although quantum-enhanced estimation of single parameter has been demonstrated in various two-level systems, measurable parameters remain highly limited. While multilevel quantum systems are capable of measuring diverse parameters, achieving this under general quantum dynamics remains a daunting challenge. Here, we propose a versatile framework for parameter estimation in multilevel systems under general quantum dynamics. Furthermore, we experimentally demonstrate quantum-enhanced measurement of relative values between multiple parameters using a superconducting qutrit sensor. In our experiments, two resonant microwave drives with distinct phases and amplitudes are used to coherently encode parameters into the qutrit. We achieve quantum-enhanced measurement of the ratio of two Rabi frequencies, the phase sum, and the phase difference between the microwave fields, demonstrating precision approaching the Heisenberg limit. Our Letter advances the frontier of quantum metrology and offers new possibilities for high-precision, resource-efficient measurements, with broad applications across science and technology.

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