
Qiuping Huang
qphuang@ustc.edu.cn
Education
2007-2012 Ph.D. in Optical Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences
2003-2007 Bachelor's Degree in Optical Information Science and Technology, Sichuan University
Experience
2023-Present Scientist,Hefei National Laboratory
2020- Present Senior Engineer, University of Science and technology of China
2012-2020 Engineer, University of Science and technology of China
Overview of Academic Research
Dr Huang’s research interest is centered on terahertz (THz) spectroscopy technology, quantum functional materials, and metamaterials, with key achievements including: (1) Independently developed optical-pump THz-probe time-resolved systems, and high-field THz pump-magneto-optical Kerr probe time-resolved systems, etc., enabling dynamic characterization of material properties under variable conditions. (2) Developed a series of actively tunable THz devices. (3) Developed a series of performance-tunable spintronic THz sources.
Research Directions/Fields:
Spintronic Terahertz emission
Terahertz spectroscopy and its applications in quantum materials
Terahertz metamaterials/metasurface devices
Major Honors and Awards
2012 President's Excellence Award of the Chinese Academy of Sciences
Representative Publications
1)Weiwei Li, Qiuping Huang*; Yalin Lu*, et al. Significant orbit-to-charge conversion in CoFeB/Pt/SrIrO3 trilayer by terahertz emission spectroscopy. Applied Physics Letters, 126(6): 062404 (2025).
2)Yangkai Wang, Qiuping Huang*; Yalin Lu*, et al. Actively switchable spintronic terahertz emission with arbitrary polarization states. Applied Physics Letters 124, 091103 (2024).
3)Yangkai Wang, Qiuping Huang*, Yalin Lu*, et al. Enhancement of spintronic terahertz emission enabled by increasing Hall angle and interfacial skew scattering. Communication Physics 6, 280 (2023).
4)Hao Cheng, Qiuping Huang*, Yalin Lu*, et al. Terahertz spin-to-charge conversion in ferromagnetic Ni nanofilms. Nanophotonics 12, 2145 (2023).
5)Weiwei Li; Qiuping Huang*, Yalin Lu*, et al. Significant efficiency increment of spintronic terahertz emitters by oxygen engineering. Applied Physics Letters 123, 121104 (2023).
6)Hao Cheng, Qiuping Huang*, Yalin Lu*, et al. Efficient and temperature-independent terahertz emission from CoFeB/NiCu heterostructures, Physical Review B 105, 155141 (2022)
7)Hao Cheng, Qiuping Huang*, Yalin Lu*, et al. Giant electrical modulation of terahertz emission in Pb(Mg1/3Nb2/3)0.7Ti0.3O3/CoFeB/Pt structure, Physical Review Applied 16, 054011 (2021).
8)Yi Zhao, Qiuping Huang*, Yalin Lu*, et al. Dual band and tunable perfect absorber based on dual gratings-coupled graphene-dielectric multilayer structures, Optics Express 27, 5217 (2019).
9)Honglei Cai, Qiuping Huang*, Yalin Lu*, et al. All-optical and ultrafast tuning terahertz plasmonic metasurfaces, Advanced Optical Materials 6, 1800143 (2018).
10)Honglei Cai, Qiuping Huang*, Yalin Lu*, et al. Multifunctional hybrid metasurfaces for dynamic tuning of terahertz waves, Advanced Optical Materials 6, 1800257 (2018).


