Faculty
YANG Guomin

Department of Communication Science and Engineering

Position:

Professional Title:19

Duties:

Email:guominyang@fudan.edu.cn

Visiting Address:East Guanghua Tower and Computer Center

Tel:021-65642003

Home Page:www.emwlab.fudan.edu.cn

Research Interests

1. Antenna theory & design

2. RF circuits & devices design

3. Signal integrity analysis of microwave and millimeter wave circuits

4. Wireless energy harvesting and microwave power transfer

5. Magnetodielectric materials and applications

6. Intelligent sensor technology                    

Academic Positions

Vice Chair of IEEE MTT Shanghai Chapter

IEEE Senior Member

CIE   Senior Member

Associate Editor of The IEEE OJAP

Editorial Board of The Journal of Micorwaves

Editorial Board of The Aerospace Shanghai

Awards

1. Shanghai Technology Invention Award (Second Grade), 2024

2. Ministry of Industry and Information Technology (Third Grade), 2024

3.The Chinese Institute of Electonics (Second Grade), 2024

4. The Okawa Foundation Research Grant, 2014

5. Shanghai Natural Science Award (Third Grade), 2013

6. The Zhuoxue Talent Award of Fudan University, 2012

7. The Dean Award of School of Information Science and Technology (FDU), 2012

 

Education and Working Experience

1. Ph.D. in Electrical Engineering, Northeastern University, Boston, USA, 2010

2. M. S. in Electronic Engineering, Shanghai Jiao Tong University, Shanghai, China, 2006

3. B. S. in Electrical Engineering, Xi'an University of Technology, Xi’an, China, 2002

Teaching

Undergraduate courses:

1. High Frequency Electronic Circuits (INFO130029.01)

2. Radio and High Frequency Electronics (INFO130312.01)

 

Graduate courses:

1. Microwave Engineering (INFO620048)

2. Microwave Theory and Antenna Techniques (INFO620049)

Publications

[1] F. H. Zhang, G. M. Yang*,and Y. Q. Jin, "Design and Analysis of Linear to Circular Polarization Converter with Third Order Meta-Frequency Selective Surfaces," IEEE Transactions on Antennas and Propagation, Vol (68), No. 9, pp. 6646-6655, Sept. 2020.

[2] F. H. Zhang, P. P. Ding, G. M. Yang*,and Y. Q. Jin, "A Novel Double Square Electromagnetic Bandgap Structure for Wideband SSN Suppression in High Speed PCB," IEEE Transactions on Electromagnetic Compatibility ,  Vol (62), No. 6, pp. 2585-2594, Dec. 2020.

[3] Y. Saifullah, A. Wagas, G. M. Yang*, and F. Xu, "Multi-bit dielectric coding metasurface for EM wave manipulation and anomalous reflection," Optics Express, Vol (28), No. 2, pp. 1139-1149, Jan. 2020.

[4] F. H. Zhang, G. M. Yang*,and Y. Q. Jin, "Low-Profile Circularly Polarized Transmitarray for Wide-Angle Beam Control with Third Order Meta-FSS," IEEE Transactions on Antennas and Propagation, Vol (68), No. 5, pp. 3586-3597, May, 2020.

[5] F. H. Zhang, Q. Song, G. M. Yang*,and Y. Q. Jin, "Generation of wideband vortex beam with different OAM modes using third-order meta-frequency selective surface," Optics Express,Vol (27), No. 24, pp. 34864-34875, Nov. 2019.

[6] Y. Saifullah, Y. He, A. Boag, G. M. Yang, and F. Xu, "Recent Progress in Reconfigurable and Intelligent Metasurface: A Comprehensive Review of Tuning Mechanisms, Hardware Designs, and Applications," Advanced Science, 2203747, Sept. 2022.

[7] X. Wang, M. S. Tong, and G. M. Yang*, "Multi-Focus Multi-Null Near-Field Transmitting Focused Metasurface," IEEE Transactions on Antennas and Propagation, Vol (71), No. 4, pp. 3172-3182, April, 2023. 

[8] W. Li, H. Guo, X. Wang, G. M. Yang*, and Y. Q. Jin, "A 2-bit Reconfigurable Metasurface with Real-Time Control for Deflection, Diffusion, and Polarization," IEEE Transactions on Antennas and Propagation, Vol (72), No. 2, pp. 1521-1531, Feb. 2024. (ESI highly cited paper)

[9] X. Wang and G. M. Yang*, "Time-coding spread-spectrum reconfigurable intelligent surface for secure wireless communication: theory and experiment," Optics Express,Vol (29), No. 20, pp. 32031-32041, Sept. 2021. 

[10] X. Wang and G. M. Yang*, "Linear-polarization metasurface converter with an arbitrary polarization rotating angle," Optics Express,Vol (29), No. 19, pp. 30579-30589, Sept. 2021.

[11] X. Liu, X. Wang, G. M. Yang*, D. Xiang and L. R. Zheng, "Dual-band frequency reconfigurable metasurface antenna for millimeter wave joint communcation and radar sensing systems, "Optics Express,Vol (32), No. 8, pp. 13851-13863, Apr. 2024.

[12] Z. Wu, S. Wu, H. Qian, F. Bao, G. Tang, and G. M. Yang*, "Comparative study of SH-mode surface acoustic wave resonators on lithium tantalate with silicon and silicon carbide substrate," IEEE Transactions on Electron Devices, Vol (71), No. 11, pp. 7022-7029, Nov. 2024.

[13] T. Zhang, H. Wang, C. Peng, Z. Chen, G. M. Yang, and X. Wang, "Multifunctional polarization converter based on linear-to-circular polarization decomposition metasurface," IEEE Transactions on Antennas and Propagation, Vol (72), No. 11, pp. 8476-8487, Nov. 2024. 

[14] Y. Yang, X. Liu, J. Zhang, G. M. Yang*, N. Chi and Y. Q. Jin, "Multimode multibeam broadband terahertz orbital angular momentum metasurface," IEEE Transactions on Antennas and Propagation, Vol (72), No. 12, pp. 9188-9196, Dec. 2024. 

[15] Y. Yang, X. Wang, J. Zhang, G. M. Yang*, and N. Chi, "Dual-band terahertz orbital angular momentum metasurface," Optics Express,Vol (32), No. 26, pp. 46004-46013, Dec. 2024.

[16] J. Chen, W. Li, K. Gong, X. Lu, M. Tong, X. Wang*, and G. M. Yang*,  "Gesture-controlled reconfigurable metasurface system based on surface electromyography for real-time electromagnetic wave manipulation," Nanophotonics, Vol (14), No. 1, pp. 107-119, Jan. 2025. (ESI highly cited paper)

[17] W. Li, X. Wang, Y. Wang, N. Yan, G. M. Yang*, and Y. Q. Jin, "Single-beam-scanning 1-bit metasurface with dual circular polarization based on hybrid coding mechanism," IEEE Transactions on Antennas and Propagation, Vol (73), No. 3, pp. 1608-1617, Mar. 2025. 

[18] J. Wu, G. M. Yang*, Y. Wang, N. Yan, and Y. Q. Jin,"Metal-frame slot antenna with a small ground clearance for the Wi-Fi 6E operation in laptop applications,"IEEE Transactions on Antennas and Propagation, Vol (73), No. 5, pp. 3394-3399, May 2025. 

[19] Z. Wu, Y. Zhang, S. Wu, H. Qian, F. Bao, X. Huang, J. Zou, and G. M. Yang*, "Ultralow-power consumption high FoM digitally controlled tunable oscillator utlizing SH-SAW resonator based on 4H-SiC substrate," IEEE Transactions on Electron Devices, Vol (72), No.9, pp. 5130-5137, Sept. 2025.

[20] C. Yin, X. Wang, G. M. Yang*, and Y. Q. Jin, “Multifunctional Adaptive Invisibility Cloak Based on 3-Bit Reconfigurable Metasurface,” IEEE Transactions on Antennas and Propagation, Vol (73), No. 11, pp. 8830-8841, Nov. 2025.

[21] C. Yin, Y. Chen, X. Wang, and G. M. Yang*, “Miniaturized 2-bit reconfigurable metasurface for real-time EM wave manipulation,” Optics Express,Vol (33), No. 6, pp. 12890-12900, Mar. 2025.

[22 ] X. Liu, X. Wang, Y. Wang, D. Xiang and L. R. Zheng, G. M. Yang*, "High-gain multiband metasurface antenna with frequency and polarization reconfigurability for millimeter-wave applications, "Optics Express,Vol (33), No. 6, pp. 14221-14235, Mar. 2025.

[23] H. Qian, Z. Wu, S. Li, Y. Feng, F. Bao, S. Wu, J. Zou, and G. M. Yang*, “Lithium Niobate-Based SAW Resonators With Sapphire and Polysilicon/Silicon Suubstrates,” IEEE Transactions on Electron Devices, Vol (72), No.10, pp. 5601-5607, Oct. 2025.

[24] Q. Jia and G. M. Yang*, "A Lens-based Digitial Beamforming Array with Enhanced Gain for Massive MIMO Applications,"IEEE Antennas and Wireless Propagation Letters, Vol (24), No.11, pp.4202-4206, Nov. 2025.

[25] Y. Chen, X. Wang, F. Xu, G. M. Yang*, and Y. Q. Jin, "Reconfigurable Holographic Metasurface Enabling Independent Manipulation of Radiating and Scattering Patterns," IEEE Transactions on Antennas and Propagation, Doi:10.1109/TAP.2025.3643932.

[26] M. Zhuang, W. Yao, Y. Li, X. Wang, J. Zhang, and G. M. Yang*, “Broadband transmissive terahertz metasurface for simultaneous quad-mode OAM multiplexing,” Optics Express, 34(10), pp. 19348-19363, May 2026.

[27] X. Hai, R. Shen, X. Wang*, and G. M. Yang*, “Noninvasive Intelligent Brain‐Metasurface System for Real‐Time Electromagnetic Wave Manipulation,” Nanophotonics, vol. 15, no. 13, pp. e7019, June 2026.

[28] Y. Chen, X. Wang*, G. M. Yang*, and Y. Q. Jin, “Space‐Time‐Coding Metasurfaces Enabling Programmable Range‐Angle‐Dependent Energy Auto‐Scanning,” Nanophotonics, vol. 15, no. 14, pp. e70204, July 2026.

[29] M. Zhuang, Y. Li, W. Yao. J. Zhang, and G. M. Yang*, “VO₂-enabled Reconfigurable Terahertz Metasurface for Airy Beam Generation and OAM Multiplexing” Optics Express, 34(15), pp. 28309-28322, July 2026.

[30] S. Li, Z. Wu, S. Wu, H. Qian, Y. Feng, F. Bao, J. Zou, and G. M. Yang*, “Spurious Transverse Mode Suppression and Evaluation Strategy in 4H-SiC TF-SAWRs,” IEEE Transactions on Electron Devices, vol. 73, no. 8, pp. 5281-5287, Aug. 2026.

[31] X. Hai, W. Li, R. Shen, X. Wang, G. M. Yang*, and Y. Q. Jin, “A Dual-Polarization 2-Bit Reflective Metasurface Enabling Simultaneous Beam Shaping and Polarization Conversion,” IEEE Antennas and Wireless Propagation Letters, vol. 25, no.8, pp.3334-3338, Aug. 2026.

[32] Y. Chen, X. Wang, G. M. Yang*, and Y. Q. Jin, “Radio-Frequency Front-End-Free Hybrid Code-Division and Space-Division Wireless Multiplexing Using Space-Time-Coding Metasurface,” Nanophotonics, vol. 15, no. 17, pp. e70277, Sept. 2026.

[33] F. H. Zhang, G. M. Yang*, and Y. Q. Jin,"Space-Borne Deployable P-Band Dual Circular Polarization Flexible Antenna Array,"IEEE Antennas and Wireless Propagation Letters, Vol (16), pp. 2529-2533, Aug. 2017.





 

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