田遥岭 返回专业
电话:028-65726036
邮箱:tianyaoling_mtrc@caep.cn
职称:副研究员
导师资格: 硕导
所属培养单位、教研团队:太赫兹通信与雷达技术研究室太赫兹固态器件/模组研究团队
田遥岭 返回专业
电话:028-65726036
邮箱:tianyaoling_mtrc@caep.cn
职称:副研究员
导师资格:硕导
所属培养单位、教研团队:太赫兹通信与雷达技术研究室太赫兹固态器件/模组研究团队
学习工作经历
2013年于中国科学技术大学获得电子科学与技术专业学士学位,2016年于中国工程物理研究院研究生院获得无线电物理硕士学位,2016-2019年为中国工程物理研究院微系统与太赫兹研究中心助理研究员,2022年于中国工程物理研究院研究生院获得无线电物理博士学位,2023年至今在中物院微太中心太赫兹通信与雷达技术研究室任副研究员。 曾获军队科学技术进步二等奖、中物院科技创新TOP10(排名1),2024电子工程研究所科学技术特别奖(排名1),中物院电子工程研究所科学技术进步奖(排名1)以及电子工程研究所十佳青年等奖项,总共发表论文40余篇,其中以第一作者或通讯作者身份作在IEEE T-MTT/TED/MWCL/MWTL等期刊发表论文30余篇,申请/授权专利十余项(完成成果转化两项)。同时兼任IEEE MWTL/T-MTT等期刊审稿人。
研究方向
 太赫兹二极管非线性模型研究;  固态太赫兹电路前端技术大功率太赫兹二极管倍频技术研究;  基于SBD的新体制功能器件研究;  太赫兹新型封装技术研究与极高频太赫兹固态电路研究
主要研究成果
[1] Yaoling Tian, Xiaojian Zhang, Kun Huang, 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] Tian Yaoling, Li Ruoxue, Huang Kun, et al. A 340 GHz Doubler Featuring >57 mW Output Power Based on Improved Design Methodology with Analytic Diode Pair Behavioral Model [J], Chinese Journal of Electronics, 2026; 35(2): 547-554. [3] Yaoling Tian, Ruoxue Li, Kun Huang, et al. A 670 GHz Solid‑State Multiplied Source with > 5mW Output Power Based on the Four‑Port Prototype and 3D‑Stacked Power‑Combined Concept[J], Journal of Infrared, Millimeter and Terahertz Waves, 2025, 46(38) [4] Kun Huang, Hao Yang, Yaoling Tian(通讯), et al. G-band quad-port balanced multiplier with 111.27 mW continuous-wave output power [J], Journal of Infrared and Millimeter Waves, 2024, 43 (1),79-84. [5] Ruoxue Li, Hao Yang, Yaoling Tian(通讯), et al. A 315-345 GHz quad-port balanced tripler with inherent suppressions on even-order harmonics using discrete Schottky diodes [J], Microwave and Optical Technology Letters, 2024, 66(4). [6] Yaoling Tian, Kun Huang, Ruoxue Li, 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 [7] 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 [8] Yaoling Tian, Jun Jiang, Dongliang Zhang, et al. A 325-GHz Balanced Frequency Tripler Based on Novel Three-Port E-Probe with Individual Groundings for RF and DC[J], IEEE Microwave and Wireless Technology Letters, 2023, 33(4): 411-414 [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, Jian Zhang, Kun Huang, Jun Jiang, Changxing Lin. A Novel Power Combined Architecture for Frequency Doubler featuring Compact 3-D Stacked Packaging and Four Multiplying structures [J], IEEE Microwave and Wireless Components Letters, 2022, 32(1): 76-79 [11] 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 [12] Yue He, Yaoling Tian(通讯), Miao Li, et al. A Broadband 630-720 GHz Schottky Based Sub-Harmonic Mixer Using Intrinsic Resonances of Hammer-Head Filter [J], China Communications, 2019, 16(2):76-84. [13] Yaoling Tian, Kun Huang, Jina cen, et al. High power single and power-combined 100∼115 GHz Schottky balanced doublers[J], Journal of Infrared and Millimeter Waves, 2021, 40(1),13-18. [14] Yaoling Tian, Ge Liu, Li Li, et al. High efficiency 285 GHz tripler based on face-to-face differential configuration[J], Journal of Infrared and Millimeter Waves, 2022, 41(4),739-744. [15] Yaoling Tian, Miao Li, Kun Huang, et al. High efficiency 220 GHz frequency doubler based on discrete Schottky diodes[J], Journal of Infrared and Millimeter Waves, 2019, 38(4),426-432. [16] Yaoling Tian, Fengjun Chen, Jun Jiang, et al. A K-band self-biased sextupler with enhanced harmonic suppression using quasi-lumped bandpass filters[J], Microwave and Optical Technology Letters, 2019, 61(7), 1723-1727
想对学生/考生说的话
主要立足于国家、院所重大需求中的关键问题,开展面向太赫兹固态器件模组的研究,和高校合作广泛,具有足够的条件提升科研和技术水平,欢迎报考。