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邮箱: haoye.qin@sz.tsinghua.edu.cn
地址: 能源楼
秦昊烨博士,现任清华大学深圳国际研究生院材料研究院助理教授、博士生导师。2025年获瑞士洛桑联邦理工学院(École Polytechnique Fédérale de Lausanne, EPFL)博士学位,随后于新加坡国立大学(National University of Singapore, NUS)从事博士后研究。
秦昊烨博士主要从事超构材料、光场和微波调控、拓扑光子学、光信息调控及智能光子器件设计等方向研究,致力于发展新型微纳光学材料与器件,实现光的偏振、相位、拓扑性质及信息维度调控,并探索其在智能感知、计算成像、光学传感与先进光子系统中的应用。
近年来,秦昊烨博士围绕超表面、光子晶体、非厄米光子学、拓扑光学及结构光等领域开展研究,在人工光学材料设计、光场调控机制及新型光子器件方面取得了一系列重要成果。相关研究成果发表于Nature、Nature Reviews Materials、Physical Review Letters、Nature Communications、Science Advances、Light: Science & Applications 等国际高水平期刊。
2022年9月-2025年8月,洛桑联邦理工大学,物理学,博士
2020年8月-2021年12月,加州大学伯克利分校,电子工程与计算机科学,硕士
2016年9月-2020年6月,北京航空航天大学,测控技术与仪器专业,学士
2026年7月-至今,清华大学,清华大学深圳国际研究生院,助理教授
2025年9月-2026年7月,新加坡国立大学,博士后
(1)超构材料与光学超表面、光子/微波器件设计;(2)拓扑光子学与非厄米光学;(3)多维光场与偏振信息处理;(4)智能光子器件、计算成像与光学传感。
[1] Haoye Qin, Zengping Su, Zhe Zhang, Wenjing Lv, Zijin Yang, Weijin Chen, Xinyue Gao, Heng Wei, Yuzhi Shi, Bo Li, Ji Zhou, Romain Fleury, Cheng-Wei Qiu, Qinghua Song. Disorder-assisted real–momentum topological photonic crystal. Nature, 2025, 639: 602–608.
[2] Haoye Qin, Wenjing Lv, Zhe Zhang, Zijin Yang, Jue Li, Meng Li, Bo Li, Ji Zhou, Romain Fleury, Patrice Genevet, Qinghua Song, Cheng-Wei Qiu. Photonic exceptional points in engineered materials and their emerging applications. Nature Reviews Materials, 2026, 11: 453–468.
[3] Haoye Qin, Wenjing Lv, Junda Wang, Kai Sun, Xinyu Mu, Zheng Han, Qinghua Song, Cheng-Wei Qiu. Observation of Spin-Duality Breaking in Pancharatnam-Berry Metasurfaces. Physical Review Letters, 2026, 136: 183805.
[4] Haoye Qin, Rong Xiang, Amir Jafargholi, Zhe Zhang, Romain Fleury. Topological radiation from vortex masers. Nature Communications, 2025, 16: 10750.
[5] Haoye Qin, Zhe Zhang, Junda Wang, Romain Fleury. Topological hysteretic winding for temporal anti-lasing. Nature Communications, 2025, 16: 6189.
[6] Haoye Qin, Zijin Yang, Po-Sheng Huang, Xinyu Mu, Shih-Hsiu Huang, Yuzhi Shi, Wannian Zhao, Bo Li, Ji Zhou, Jesús Zúñiga-Pérez, Patrice Genevet, Pin Chieh Wu, Qinghua Song. Sphere of arbitrarily polarized exceptional points with a single planar metasurface. Nature Communications, 2025, 16: 2656.
[7] Wenjing Lv, Haoye Qin, Zengping Su, Cheng Zhang, Jiahui Huang, Yuzhi Shi, Bo Li, Patrice Genevet, Qinghua Song. Robust generation of intrinsic C points with magneto-optical bound states in the continuum. Science Advances, 2024, 10: eads0157.
[8] Haoye Qin, Wenjing Lv, Xiaodong Shi, Fulong Shi, Xinyu Mu, Zhou Zhou, Jiazheng Qin, Bo Li, Cheng-Wei Qiu, Qinghua Song. Local–nonlocal assisted multifunctional photonic crystals. Light: Science & Applications, 2026, 15: 243.
[9] Haoye Qin, Zengping Su, Mengqi Liu, Yixuan Zeng, Man-Chung Tang, Meng Li, Yuzhi Shi, Wei Huang, Cheng-Wei Qiu, Qinghua Song. Arbitrarily polarized bound states in the continuum with twisted photonic crystal slabs. Light: Science & Applications, 2023, 12: 66.
[10] Haoye Qin, Zhe Zhang, Qiaolu Chen, Zhe Zhang, Romain Fleury. Anomalous-Chern Steering of Topological Nonreciprocal Guided Waves. Advanced Materials, 2024, 36: 2401716.
[11] Haoye Qin, Yuzhi Shi, Zengping Su, Guodan Wei, Zhanshan Wang, Xinbin Cheng, A. Q. Liu, Patrice Genevet, Qinghua Song. Exploiting extraordinary topological optical forces at bound states in the continuum. Science Advances, 2022, 8: eade7556.
[12] Zhe Zhang, Junda Wang, Haoye Qin, Romain Fleury. Floquet topological physics in photonics[invited]. Optical Materials Express, 2025, DOI: 10.1364/OME.550605.
全国超材料大会优秀青年学者