主要研究成果
[1] Yaoling Tian, Xiaojian Zhang, Kun Huang, Yue He. et al. A Monopole Antenna-Based Frequency Doubler with Manipulated E-Fields for High-Efficiency In-Phase Power Combination [J], IEEE Microwave and Wireless Technology Letters, 2026, Early Access.
[2] He Yue, Liu Ge, Liu Juan. Et al. A 220 GHz Orthogonal Modulator Based on Subharmonic Mixers Using Anti-Paralleled Schottky Diodes[J], Chinese Journal of Electronics,2022;31(3):562-568.
[3] Yue He, Li Li, Ge Liu, Yaoling Tian. Et al. 1 THz Schottky transceiver front-end based on 5 μm GaAs monolithic membrane[J],Microwave and Optical technology letters,2022; 64: 2143- 2150.
[4] He Yue, Tian Yao-ling, Zhou ren. et al. High power 510 GHz monolithic integrated frequency tripler for local oscillation sources in heterodyne receiver[J]. J. Infrared Millim. Waves, 2022,41(5):863~870.
[5] Yue He, Yaoling Tian, Miao Li, et al. A Broadband 630-720 GHz Schottky Based SYub-Harmonic Mixer Using Intrinsic Resonances of Hammer-Head Filter [J], China Communications, 2019, 16(2):76-84.
[6] Yue He, Ge Liu, et al. 340 and 250 GHz Schottky solid-state heterodyne receiver arrays for passive imaging systems, Microwave and Optical technology letters, 2022; 64: 1048- 1055.
[7] Yaoling Tian, Kun Huang, Ruoxue Li, Yue He, et al. A Novel Four-Port Configuration with Improved Efficiency and Power-Handling Capability for Diode-Based Doublers in Submillimeter Waves[J], IEEE Transactions on Microwave Theory and Techniques, 2023, 71(8),3585-3595
[8] Yaoling Tian, Kun Huang, Yue He, et al. Analytical Electro-Thermal Model for Multi-anode Schottky Diodes with Improved Temperature-Dependent Parameters Extraction Method [J], IEEE Transactions on Electron Devices, 2023, 70(2), 418-423
[9] Yaoling Tian, Yue He, Kun Huang, et al. High Power 170 GHz Frequency Doubler Based on GaAs Schottky Diodes [J], Chinese Journal of Electronics, 2022; 31(3): 547-554.
[10] Yaoling Tian, Kun Huang, Yue He, Li Li, Jiang Jun, Cen Jina, Changxing Lin, Jian Zhang. A Novel Balanced Frequency Tripler with Improved Power Capacity for Terahertz Application [J], IEEE Microwave and Wireless Components Letters, 2021, 31(8): 925-928