在编教师

在编教师

陆梁军 助理教授   
上海交通大学
电子信息与电气工程学院电子工程系
区域光纤通信网与新型光通信系统国家重点实验室
邮编:200240
电话:021-64932755
上海市闵行区东川路800号电院楼群5-200A房间
Email: luliangjun@sjtu.edu.cn
 
Lu Liangjun
Tenure-track Assistant Professor
State Key Lab of Advanced Optical Communication Systems and Networks
Department of Electronic Engineering, School of Electronic Information and Electrical Engineering (SEIEE)
Shanghai Jiao Tong University
800 Dongchuan Rd.
Shanghai 200240, China
Tel: 021-64932755
Email: luliangjun@sjtu.edu.cn

 

个人简介    
陆梁军2011年获浙江大学光电系工学学士学位,2016年6月获上海交通大学电子工程系博士学位。在博士期间,参与973计划,863计划,自然科学基金等多个项目,并获得国家奖学金、校三好生、市优秀毕业生等奖学金及荣誉称号。2017年2月加入上海交通大学电子系“区域光纤通信网与新型光通信系统”国家重点实验室,主要研究方向为光电子集成器件、硅基光电子集成芯片,用于光通信、光子信号处理领域等。现在国外一流刊物和会议上发表论文70余篇,会议邀请报告6次,Google Scholar上引用500余次。陆梁军目前是IEEE/OSA/SPIE会员,Optics Express,Optics Letters,Photonics Technology Letters, Journal of Lightwave Technology等期刊审稿人。
 
 
研究领域
  • 硅基光电子集成器件及芯片
  • 主要包括光开关、可编程光处理器、光波束成形等
 
教育经历
  • 2011/09–2016/06,上海交通大学,电子工程系,博士
  • 2007/09–2011/06,浙江大学,光电工程系,学士
 
工作经历
  • 2017/02 – 至今,上海交通大学,电子信息与电气工程学院区域光纤通信网与新型光通信系统国家重点实验室,助理教授

 讲授课程
  • 《光电子器件》
  • 《半导体物理与器件》
 
科研项目
  • 国家自然科学基金委(青年):基于自耦合谐振的硅基可编程微波光子信号处理芯片研究(61705129,2018.01-2020.12)
  • 光纤国重实验室自主课题:基于MZI结构的硅基6×6可编程多功能光子处理芯片研究 (GKZD030041,2017.06-2018.06)
  • 上海市市级科技重大专项:大规模光开关集成芯片研究 (2017SHZDZX03,2017.07-2021.12)
  • 光纤国重实验室自主课题:硅基二维微波光子波束成形芯片研究 (GKZD030045,2019.01-2020.12)
 
代表性论文
  1. H. Tang, L. Zhou, J. Xie, L. Lu, and J. Chen, "Electromagnetically Induced Transparency in a Silicon Self-Coupled Optical Waveguide," Journal of Lightwave Technology 36, 2188-2195 (2018).
  2. Z. Guo, L. Lu, L. Zhou, L. Shen, and J. Chen, "16×16 silicon optical switch based on dual-ring assisted Mach-Zehnder interferometers," J. Lightwave Technol. 36, 225-232 (2018).
  3. X. Wang, L. Zhou, R. Li, J. Xie, L. Lu, K. Wu, and J. Chen, “Continuously tunable ultra-thin silicon waveguide optical delay line,” Optica 4, 507-515, (2017).
  4. S. Zhao, L. Lu, L. Zhou, D. Li, Z. Guo, and J. Chen, "16 × 16 silicon Mach–Zehnder interferometer switch actuated with waveguide microheaters," Photon. Res. 4, 202-207, (2016).
  5. L. Lu, S. Zhao, L. Zhou, Z. Li, D. Li, M. Wang, X. Li, and J. Chen, “16×16 non-blocking silicon optical switches based on EO- and TO-tunable Mach-Zehnder interferometers,” Opt. Express, 4, 9295-9307, (2016).
  6. Z. Li, L. Zhou, L. Lu, S. Zhao, D. Li, and J. Chen, “4×4 non-blocking optical switch fabric based on cascaded multimode interferometers,” Photon. Res., 4, 21-26, (2016).
  7. L. Lu, L. Zhou, Z. Li, D. Li, S. Zhao, X. Li, and J. Chen, "4×4 silicon optical switches based on double-ring assisted Mach-Zehnder interferometers," IEEE Photon. Technol. Lett., 27, 2457-2460 (2015).
  8. L. Lu, L. Zhou, Z. Li, X. Li, and J. Chen, “Broadband 4×4 nonblocking silicon electrooptic switches based on Mach-Zehnder interferometers.” IEEE Photon. J., 7, 7800108-7800108 (2015).
  9. L. Lu, L. Zhou, S. Li, Z. Li, X. Li, and J. Chen, "4 × 4 nonblocking silicon thermo-optic switches based on multimode interferometers." IEEE Lightwave. Technol. J., 33, 857-864 (2015).
  10. T. Yang, J. Dong, L. Lu, L. Zhou, A. Zheng, X. Zhang, and J. Chen, "All-optical differential equation solver with constant-coefficient tunable based on a single microring resonator," Sci. Rep., 4, 5581, (2014).
  11. L. Lu, L. Zhou, Z. Li, X. Li, and J. Chen. "Low-power 2×2 silicon electro-optic switches based on double-ring assisted Mach-Zehnder interferometers," Opt. Lett., 39, 1633-1636, (2014).
  12. J. Xie, L. Zhou, X. Sun, Z. Zou, L. Lu, H. Zhu, X. Li, and J. Chen, "Selective excitation of microring resonances using a pulley-coupling structure," Appl. Opt., 53, 878-884, (2014).
  13. L. Lu, L. Zhou, X. Sun, J. Xie, Z. Zou, H. Zhu, X Li, and J. Chen, "CMOS-compatible temperature-independent tunable silicon optical lattice filters," Opt. Express, 21, 9447-9456 (2013).