HU Xinhua
Title: Professor
Phone number: 31243516 Email: huxh@fudan.edu.cn
Office: Rm. 403, Advanced Material Building, Jiangwan Campus
Research group website :http://mse.fudan.edu.cn/hxh/
Ph.D, Physics, Fudan University , Shanghai , P.R. China , 2003.
B.S., Physics, Fudan University , Shanghai , P.R. China, 1998.
Professor, Department of Materials Science, Fudan University , P. R. China, Oct. 2011 - present.
Senior Scientist, Laboratory of Advanced Materials, Fudan University , P. R. China, Oct. 2008 - Oct. 2011.
Research Associate, Ames Laboratory, Iowa State University , United States , Aug. 2005 - Sep. 2008.
Visiting Scholar, Department of Physics, Hong Kong University of Science and Technology, Nov. 2003 - July 2005.
Photonic crystals, metamaterials, liquid waves in periodic structures
Introduction to photonic bandgap materials
Best poster award (Physics), International Symposium on Photonic and Electromagnetic Crystal Structures V (PECS V), Kyoto , Japan , 2004.
Permission to Fudan University free from entrance examinations, 1994.
The first place award, the Correspondence Physics Competition, the High-School Mathematics-Physics-Chemistry magazine, Jan. 1994.
The first place award, the Q&A Game on Physics, the High-School Mathematics-Physics-Chemistry magazine, Oct. 1993.
1.Y. Song, N. Jiang, L. Liu, X. Hu*, and J. Zi*, Cherenkov Radiation from Photonic Bound States in the Continuum: Towards Compact Free-Electron Lasers, Phys. Rev. Appl. 10, 064026 (2018).
2. Y. Song, J. Du, N. Jiang, L. Liu, and X. Hu*, Efficient terahertz and infrared Smith-Purcell radiation from metal-slot metasurfaces, Opt. Lett. 43, 3858 (2018).
3. L. Liu, H. Chang, C. Zhang, and X. Hu, Single-channel labyrinthine metasurfaces as perfect sound absorbers with tunable bandwidth, Appl. Phys. Lett. 111, 083503 (2017).
4. C. Zhang and X. Hu, Three-dimensional single-port labyrinthine acoustic metamaterial: Perfect absorption with large bandwidth and tunability, Phys. Rev. Appl. 6, 064025 (2016)
5. P. Yang, F. Zhao, J. Ding, J. Guo, W. Shi, C. Wang*, and X. Hu*, 'Bubble-in-Bubble Strategy for High-Quality Ultrasound Imaging with a Structure Coupling Effect', Chem. Mater. 26, 2121 (2014).