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PE: LAN Feng

published: 2017-01-03 09:31:16       hits: 

name : LAN Feng Sex: male phone: 86-028-83202149
email: office-address: Room 525,Yifu Building,Shahe campus
PH.D  Supervisor: No Master Supervisor: Yes
major: Electronic Science and technology:1.THz Science and Technology 2.Millimeter Wave Electronics and echnology 3.Microwave Electronics and echnology 4.Biomedical Electromanetics and Imaging
research interst: Terahertz Detection,Terahertz Wireless Communication,Terahertz Biological Sensing,Terahertz Scanning/Communicating Antenna
Biography: Graduated from the University of Electronic Science and technology of China (UESTC) in July 2000, received a bachelor's degree in Electronic Engineering. Received a master's degree in Optics in 2007, and received a PHD degree in Optics in 2014.Have been participated in or presided over the National Key Research Projects, the National 863, the National Natural Science Foundation and Central University Research Projects and so on more than 10 since 2000,such as THz wireless communication,Research on key technology of THz high speed space communication based on external modulation, Terahertz coding surface-array antenna based on a composite metamaterial with a double-channel heterostructure,etc.Have published more than 40 papers in the POP, Optics Letters, IEEE and Acta Physica Sinica journals and other important international conferences at home and abroad,SCI&EI indexed papers over 20, apllyied 8 invention patents (1 authorized).Awarded by the Scientific and Technological Progress Award for “the 8mm wave band relativistic diffraction generator”,2007. The master's dissertation was awarded as the excellent master dissertation of UESTC, 2007
Education experience: 1.2000, B.S., Electronic Engineering, UESTC.
2.2007, M.S., Optics, UESTC, Chengdu, Sichuan, China
Graduation thesis: "Theoretical Analysis and Experimental Study on the Output Device of Ka Band Relativistic Diffraction Generator." Research area: Scattering matrix based on the conservation of complex power technique(CCPT), Output device design, Measurement method
3. 2014, Ph.D., Optics, University of Electronic Science and Technology of China(UESTC), Graduation Thesis: "Theoretical and Applied Research on Millimeter and Sub-Millimeter Wave Transmission Devices."
Research area: Electromagnetic wave transmission system, Coaxial Bragg reflector, Mode conversion and transition, Metamaterials-based filter
Selected Publications: 1) Feng Lan, Ziqiang Yang, Limei Qi, et al. Terahertz dual-resonance bandpass filter using bilayer reformative complementary metamaterial structures. Optics Letters, 2014, 39(7):1709-1712 (SCI:AE3PG).
2) Feng Lan, Ziqiang Yang, Limei Qi, et al. Compact waveguide bandpass filter employing two-dimensional metallic photonic crystals for millimeter to terahertz frequencies. Chinese Optics Letters, 2014,12(4):040401(SCI:AF8OV).
3) Feng Lan, Xi Gao,Limei Qi. Terahertz bandpass filter using double-layer reformative complementary frequency selective surface structures.Acta Phys.Sin.2014,63 (10):104209-1 (SCI: AK9IW).
4)  Feng Lan, Ziqiang Yang, Zongjun Shi.Study on TE0n nonuniform ripple-wall mode converters in circular waveguide. Acta Phys.Sin.2012,61(15):155201-1 (SCI:010IW).
5) Feng Lan, Ziqiang Yang, Zongjun Shi. Study on Coaxial Bragg Reflector with Small Tapered Inner Rode Corrugated Ripples and Phase Matching Section. Acta Phys.Sin.2011,60 (9):091101-1(SCI:823HV).
6) Feng Lan,Xi Gao,Zongjun Shi. Optimization design of terahertz corrugated circular waveguide mode converter. Journal of University of Electronic Science and Technology of China. 2015, 44(4):534-538. (EI:20153401195779).
7) Feng Lan,Xi Gao,Zongjun Shi.Measurement of Radiation Power for Ka-Band
Relativistic Diffraction Generator. Journal of University of Electronic Science and Technology of China. 2006, 35(5):777-779. (EI: 20070310363084).
8) Feng Lan, Ziqiang Yang, Zongjun Shi. Scattering matrix method for the optimized design of 0.22 THz corrugated circular waveguide mode converter. Proc. 9th ISAPE,Guangzhou,2010,921-924 (EI:20110813681172).
9) Feng Lan, Xi Gao, Zongjun Shi. On solving TM0n modal excitation in a Ka-band overmoded circular waveguide by the conservation of complex power technique. Journal of Electronic Science and Technology of China,2009,7(2):180-184.