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DIVISION OF FUNDAMENTAL PHYSICS

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Zhengyuan Xue

zyxue83@163.com

Education

2023-Present Scientist Hefei National Laboratory

2016-Present Professor, South China Normal University

2010-2015 Associate Professor, South China Normal University

2009-2009 Lecturer, South China Normal University   

Overview of Academic Research

Prof. Xue’s research interest is the systematic study on large-scale quantum computation, for resolving the outstanding challenges in programmable quantum control, fault-tolerant architectures, and physical implementations.

His major achievements include:

* Geometric quantum computation:

 Suppressed errors in complex qubit networks.

* Parametric tunable coupling:

 Enabled flexible control over qubits for large-scale quantum computation.

* Hamiltonian parameter estimation‌:

 Approaching Heisenberg limited precision on superconducting circuits.

Research Directions/Fields:‌

Solid-state quantum computation

Quantum error correction

Quantum meteorology

Representative Publications

1. Z.-C. He and Z.-Y. Xue*, High-fidelity initialization of a logical qubit with multiple injections, Phys. Rev. A 111, 052419 (2025).

2. S. Li#, D.-J. Pan#, Y.-K. Zhu#, et al., Ultrahigh-precision Hamiltonian parameter estimation in a superconducting circuit, Phys. Rev. Lett. 132, 250204 (2024).

3. Y. Liang and Z.-Y. Xue*, Nonadiabatic geometric quantum gates with on-demand trajectories, Phys. Rev. Appl. 21, 064048 (2024).

4. C.-Y. Ding et al., Path-optimized nonadiabatic geometric quantum computation on superconducting qubits, Quantum Sci. Technol. 7, 015012 (2022).

5. S. Li and Z.-Y. Xue*, Dynamically corrected nonadiabatic holonomic quantum gates, Phys. Rev. Appl. 16, 044005 (2021).

6. Y. Xu#, Z. Hua#, T. Chen#, et al., Experimental implementation of universal nonadiabatic geometric quantum gates in a superconducting circuit, Phys. Rev. Lett. 124, 230503 (2020).

7. B.-J. Liu et al., Plug-and-play approach to nonadiabatic geometric quantum gates, Phys. Rev. Lett. 123, 100501 (2019).

8. F.-L. Gu et al., Synthetic spin-orbit coupling and topological polaritons in Janeys-Cummings lattices, npj Quantum Inf. 5, 36 (2019).

9. X. Li#, Y. Ma#, et al., Perfect quantum state transfer in a superconducting qubit chain with parametrically tunable couplings, Phys. Rev. Appl. 10, 054009 (2018).

10. Y. Xu et al., Single-loop realization of arbitrary non-adiabatic holonomic single-qubit gates in a superconducting circuit, Phys. Rev. Lett. 121, 110501 (2018).