一、个人简介
吴超华,直聘副研究员,硕士生导师。2023年于山西大学获博士学位。主要研究方向为非厄米物理、拓扑物态与量子模拟。在Nature Communications、Physical Review A/B等学术期刊发表论文20余篇,主持国家自然科学基金青年项目。
二、教育背景
2017.09-2023.07山西大学物理学院原子与分子物理 博士
2013.09-2017.07长江大学物理学院 物理学 学士
三、工作经历
2023.08-至今 郑州大学物理学院 直聘副研究员
四、研究项目
1. 国家自然科学基金青年项目(12404372),2025.01-2027.12,30万,主持。
2. 国家资助博士后研究人员计划(B档)(GZB20240684)。
3. 中国博士后科学基金面上资助(2025M773407)。
五、代表性论文
#共同第一作者,*通讯作者
1. Chaohua Wu, Xuewei Zhang*, Zhenxing Cui, Mou Yan*, and Gang Chen*, Non-Hermitian non-Abelian lattice gauge fields in electrical circuits,Sci. China Phys. Mech. Astron.69, 277011 (2026).
2. Juan Kang,Chaohua Wu*, Keran Li, Shuo Liu, Qinglong Zhang, and Gang Chen*, Dynamical distillation of topological boundary states via non-Hermitian masking,Phys. Rev. A113, 063514 (2026).
3. Keran Li#,Chaohua Wu#, Juan Kang*, Shuo Liu, Qinglong Zhang, Diyuan Zheng*, Wansu Bao, Yanyang Zhou, and Gang Chen*, Emergence of higher-order topology in a loss-embedded kagome lattice,Phys. Rev. A113, 043523 (2026).
4. Zuohong Wang,Chaohua Wu*, Juan Kang, and Ni Liu*, Driven flux-induced Floquet topological insulators,Phys. Rev. B112, 214312 (2025).
5. Chaohua Wu, Xuewei Zhang*, Juan Kang, Zhenxing Cui, Mou Yan*, and Gang Chen*, Observation of non-Hermiticity-induced unpolarized Landau levels in honeycomb circuit networks,Phys. Rev. B112, 224302 (2025).
6. Lei Wang,Chaohua Wu*, Xuewei Zhang, Juan Kang, and Gang Chen*, Interaction-induced flat-band localization transition in a nonreciprocal rhombic lattice,Phys. Rev. B112, 094316 (2025).
7. Gaoyu Zhang#, Juan Kang#,Chaohua Wu*, D. Zheng*, Y. Zhou, W. Bao, and Gang Chen*, Multigap topology engineering in non-Hermitian superlattices,Phys. Rev. A112, 043549 (2025).
8. Lei Wang, Juan Kang, Ni Liu*,Chaohua Wu*, and Gang Chen*, Localization transitions of correlated particles in nonreciprocal quasicrystals,Phys. Rev. A111, 023303 (2025).
9. Xuewei Zhang,Chaohua Wu*, Mou Yan*, and Gang Chen*, Observation of non-Hermitian pseudo-mobility-edge in a coupled electric circuit ladder,Phys. Rev. B111, 014304 (2025).
10. Xuewei Zhang#,Chaohua Wu#, Mou Yan, Ni Liu, Ziyu Wang*, and Gang Chen*, Observation of continuum Landau modes in non-Hermitian electric circuits,Nat. Commun.15, 1798 (2024).
11. Lei Wang, Ni Liu*,Chaohua Wu*, and Gang Chen, Dynamical encircling of multiple exceptional points in anti-PT symmetry system,Opt. Express32, 21616 (2024).
12. Chaohua Wu#, Weijie Liu#, Yuechen Jia, Gang Chen*, and Feng Chen*, Observation of topological pumping of a defect state in a Fock photonic lattice,Phys. Rev. A107, 033501 (2023).
13. Chaohua Wu, Zhesen Yang, Jiangshan Tang, Ni Liu*, Gang Chen*, and Suotang Jia, Phase-controlled skin effect and topological transition in a dissipative two-leg ladder model,Phys. Rev. A106, 062206 (2022).
14. Chaohua Wu, Ni Liu*, Gang Chen*, and Suotang Jia, Non-Hermiticity-induced topological transition in a long-range Su-Schrieffer-Heeger model,Phys. Rev. A106, 012211 (2022).
15. Weijie Liu#,Chaohua Wu#, Yuechen Jia, Suotang Jia, Gang Chen*, and Feng Chen*, Observation of edge-to-edge topological transport in a photonic lattice,Phys. Rev. A105, L061502 (2022).
16. Jianfei Chen,Chaohua Wu*, Jingtao Fan and Gang Chen, Characterizing topological phase of superlattices in superconducting circuits,Chinese Phys. B31, 088501 (2022).
17. Chaohua Wu, Jingtao Fan*, Gang Chen*, and Suotang Jia, Non-Hermiticity-induced reentrant localization in a quasiperiodic lattice,New J. Phys.23, 123048 (2021).
18. Chaohua Wu, Xin Guan, Jingtao Fan*, Gang Chen*, and Suotang Jia, Dynamical characterization of quadrupole topological phases in superconducting circuits,Phys. Rev. A104, 022601 (2021).
19. Chaohua Wu, Zhiwei Fang*, Jingtao Fan*, Gang Chen, and Ya Cheng, Dissipative Kerr solitons in optical microresonators with Raman effect and third-order dispersion,Chinese Phys. B30, 054206 (2021).
20. Chaohua Wu, Jingtao Fan*, Gang Chen*, and Suotang Jia, Spin dynamics of a spin orbit-coupled Bose-Einstein condensate in a shaken harmonic trap,Phys. Rev. A99, 013617 (2019).
21. Chaohua Wu, Jingtao Fan*, Gang Chen*, and Suotang Jia, Symmetry-breaking induced dynamics in a nonlinear microresonator,Opt. Express27, 28133 (2019).