
Xing Rong
xrong@ustc.edu.cn
Education
2005-2009 Ph.D. in [Physics], [University of Science and Technology University]
2001-2005 Bachelor's Degree in [Physics], [University of Science and Technology University]
Experience
2021-Present Researcher, Hefei National Laboratory
2021-Present Professor, University of Science and Technology University
Overview of Academic Research
Prof. Xing Rong’s research interest is the systematic study on spin magnetic resonance, searching for new physics beyond the Standard Model by quantum sensing, non-Hermitian physics on spin system and quantum thermal dynamics.
Research Directions/Fields:
Spin magnetic resonance
Quantum sensing
Major Honors and Awards
Representative Publications
1. Wang, Y., Wu, Y., Ye, X. et al. Non-Hermitian non-Abelian topological transition in the S = 1 electron spin system of a nitrogen vacancy centre in diamond. Nat. Nanotechnol. (2025). https://doi.org/10.1038/s41565-025-01913-4
2. Wu Y., et al., Experimental Observation of Dirac Exceptional Points, Phys. Rev. Lett. 134, 153601 (2025)
3. Wu, Y., Wang, Y., Ye, X. et al. Third-order exceptional line in a nitrogen-vacancy spin system. Nat. Nanotechnol. 19, 160–165 (2024)
4. Niu. Z., et al., Experimental Investigation of Coherent Ergotropy in a Single Spin System, Phys. Rev. Lett. 133, 180401 (2024)
5. Huang Y., et al., New Constraints on Exotic Spin-Spin-Velocity-Dependent Interactions with Solid-State Quantum Sensors, Phys. Rev. Lett.132.180801 (2024)
6. Liu W., et al., Experimental Test of the Jarzynski Equality in a Single Spin-1 System Using High-Fidelity Single-Shot Readouts, Phys. Rev. Lett.131.220401 (2023)
7. Wu D., et al., Improved Limits on an Exotic Spin- and Velocity-Dependent Interaction at the Micrometer Scale with an Ensemble-NV-Diamond Magnetometer, Phys. Rev. Lett. 131.071801 (2023)
8. Fu Y., et al., Experimental Investigation of Quantum Correlations in a Two-Qutrit Spin System, Phys. Rev. Lett. 129.100501 (2022)
9. Jiao M., et al., Experimental Constraint on an Exotic Parity-Odd Spin- and Velocity-Dependent Interaction with a Single Electron Spin Quantum Sensor, Phys. Rev. Lett. 127.010501 (2021)
10. Wu. Y., et al., Observation of Parity-Time Symmetry Breaking in a Single-Spin System, Science 364, 878 (2019)


