王瑞军

王瑞军

副教授

[email protected]

通讯地址:中山大学(广州)东校园纳米楼214

中山大学百人计划引进人才。2021年2月加入中山大学电子与信息工程学院,曾在瑞士苏黎世联邦理工学院ETH的量子电子学所开展博士后研究,博士毕业于光电集成领域的世界顶尖研究团队-比利时根特大学和欧洲微电子研究中心IMEC的光电组。目前主要从事光电集成芯片、半导体激光器芯片和中红外光电子方面的研究。已在国际期刊和学术会议发表论文60余篇,其中第一作者和通讯作者在Optica、IEEE Journal of Selected Topics in Quantum Electronics、Applied Physics Letters、Photonics Research、Optics Express和Optics Letters等国际期刊发表论文18篇,包括特邀论文3篇。在国际会议做口头报告12次,并应邀在领域内的顶级会议CLEO和Photonics West等重要会议做特邀报告15次。同时受邀为Elsevier出版的著作《Mid-infrared Optoelectronics》撰写章节。已获得授权中国发明专利2项,申请国际发明专利2项。

办公室:中山大学(广州)东校园纳米楼214

研究生招生专业:电子科学与技术、集成电路工程。欢迎各种理工专业背景的同学加入团队。

正在招收2025年入学研究生,目前尚有名额,欢迎联系讨论。

欢迎博士生、硕士生和本科生加入团队开展科研工作。

联系方式: [email protected]

学术兼职和社会服务

IEEE Journal of Selected Topics in Quantum Electronics、 Optics Express、Optics Letters、 IEEE Journal of Lightwave Technology、  APL Photonics、 Chinese Optics Letters、Applied Physics Express、 IEEE Photonics Journal 和Applied Optics等期刊审稿人

教育经历

2005年9月-2009年7月                  西安电子科技大学                                                            本科

2009年8月-2012年7月                  山东大学                                                                         硕士

2012年9月-2017年11月                比利时根特大学与欧洲微电子研究中心IMEC                     博士

博士后工作经历:

2017年11月-2018年08月              比利时根特大学与欧洲微电子研究中心IMEC

2018年10月-2021年01月              瑞士苏黎世联邦理工学院ETH      

授课课程

本科生课程:《电路理论基础》,《电路理论基础实验》 ,《工程设计与实践》

研究生课程:《先进光电子集成技术》

研究方向

光电集成芯片,半导体激光器芯片,中红外光电子

科研项目

2024-2027,   基于异质集成的宽带与高速波长调谐磷化铟-铌酸锂激光器研究, 国家自然科学基金面上项目,项目负责人

2023-2026,面向2微米光通信的硅基波导集成光电器件关键技术研究,粤深联合基金粤港澳研究团队项目,项目中大方任务负责人

2023-2027,面向下一代移动通信的关键太赫兹光电集成器件研究,国家自然科学基金重点项目,项目中大方任务负责人

2022-2024,2微米波段的磷化铟-氮化硅混合集成激光器,广东省自然科学基金面上项目,项目负责人

2021-2024,中山大学百人计划引进人才启动经费, 项目负责人

代表性科研成果

代表性期刊论文与邀请报告:

  1. Xian Zhang, Xiaoyue Liu, Lin Liu, Ya Han, Heyun Tan, Liu Liu, Zhongjin Lin, Siyuan Yu, Ruijun Wang*, and Xinlun Cai*, “Heterogeneous integration of III–V semiconductor lasers on thin-film lithium niobite platform by wafer bonding,” Appl. Phys. Lett., 122, 081103 (2023).
  2. Xian Zhang, Xiaoyue Liu, Rui Ma, Zichao Chen, Zhuohui Yang, Ya Han, Bing Wang, Siyuan Yu, Ruijun Wang*, Xinlun Cai*, “Heterogeneously integrated III–V-on-lithium niobate broadband light sources and photodetectors,”Optics Letters 47(17), 4564-4567 (2022).
  3. Ruijun Wang*, Philipp Täschler, Zhixin Wang, Emilio Gini, Mattias Beck, Jérôme Faist, “Monolithic Integration of Mid-Infrared Quantum Cascade Lasers and Frequency Combs with Passive Waveguides,” ACS Photonics 9(2), 426–431(2022).
  4. Ya Han, Xian Zhang, Fujin Huang, Xiaoyue Liu, Mengyue Xu, Zhongjin Lin, Mingbo He, Siyuan Yu, Ruijun Wang*, Xinlun Cai*, “Electrically pumped widely tunable O-band hybrid lithium niobite/III-V laser,” Optics Letters 46 (21), 5413-5416 (2021).
  5. Ruijun Wang*, Philipp Täschler, Filippos Kapsalidis, Mehran Shahmohammadi, Mattias Beck, Jérôme Faist, “Mid-infrared quantum cascade laser frequency combs based on multi-section waveguides,” Optics Letters 45 (23), 6462-6465 (2020).
  6. Ruijun Wang*, Bahawal Haq, Stephan Sprengel, Aditya Malik, Anton Vasiliev, Gerhard Boehm, Ieva Simonyte, Augustinas Vizbaras, Kristijonas Vizbaras, Joris Van Campenhout, Roel Baets, Markus-Christian Amann, Gunther Roelkens, “Widely tunable III-V/silicon lasers for spectroscopy in the short-wave infrared,” IEEE Journal of Selected Topics in Quantum Electronics (Invited research paper), 25(6), 1502412 (2019).
  7. Kasper Van Gasse#, Ruijun Wang#, and Gunther Roelkens , “27 dB gain III-V-on-silicon semiconductor optical amplifier with > 50 mW output power,” Optics Express, 27(1), 293-302 (2019).
  8. Ruijun Wang*, Stephan Sprengel, Anton Vasiliev, Gerhard Boehm, Joris Van Campenhout, Guy Lepage, Peter Verheyen, Roel Baets, Markus-Christian Amann, and Gunther Roelkens, “Widely tunable 2.3 µm III-V-on-silicon Vernier lasers for broadband spectroscopic sensing,” Photonics Research 6(9), 858-866 (2018).
  9. Ruijun Wang*, Stephan Sprengel, Gerhard Boehm, Roel Baets, Markus-Christian Amann, and Gunther Roelkens, “Broad wavelength coverage 2.3 µm III-V-on-silicon DFB laser array,” Optica 4(8), 972-975 (2017).
  10. Ruijun Wang#, Anton Vasiliev#, Muhammad Muneeb, Aditya Malik, Stephan Sprengel, Gerhard Boehm, Markus-Christian Amann, Ieva Šimonyte, Augustinas Vizbaras , Kristijonas Vizbaras, Roel Baets and Gunther Roelkens*, “III-V-on-Silicon Photonic Integrated Circuits for Spectroscopic Sensing in the 2-4 µm Wavelength Range,” Sensors 17(8) (Invited Review), 1788 (2017).
  11. Ruijun Wang*, Aditya Malik#, Ieva Šimonytė, Augustinas Vizbaras, Kristijonas Vizbaras, and Gunther Roelkens, “Compact GaSb/silicon-on-insulator 2.0x μm widely tunable external cavity lasers,” Optics Express, 24(25), 28977-28986 (2016).
  12. Ruijun Wang*, Stephan Sprengel, Aditya Malik, Anton Vasiliev, Gerhard Boehm, Roel Baets, Markus-Christian Amann, and Gunther Roelkens, “Heterogeneously integrated III–V-on-silicon 2.3x μm distributed feedback lasers based on a type-II active region,” Applied Physics Letters 109, 221111 (2016).
  13. Ruijun Wang*, Stephan Sprengel, Gerhard Boehm, Muhammad Muneeb, Roel Baets, Markus-Christian Amann, and Gunther Roelkens, “2.3 µm range InP-based type-II quantum well Fabry-Perot lasers heterogeneously integrated on a silicon photonic integrated circuit,” Optics Express 24, 21081- 21089 (2016).
  14. Ruijun Wang*, Muhammad Muneeb, Stephan Sprengel, Gerhard Boehm, Aditya Malik, Roel Baets, Markus-Christian Amann, Gunther Roelkens, “III-V-on-silicon 2-µm-wavelength-range wavelength demultiplexers with heterogeneously integrated InP-based type-II photodetectors,” Optics Express 24(8), 8480–8490 (2016).
  15. Ruijun Wang*, Stephan Sprengel, Muhammad Muneeb, Gerhard Boehm, Roel Baets, Markus-Christian Amann, and Gunther Roelkens, “2 μm wavelength range InP-based type-II quantum well photodiodes heterogeneously integrated on silicon photonic integrated circuits,” Optics Express 23(20), 26834–26841 (2015).
  16. Ruijun Wang,   Duo Liu*,   Zhiyuan Zuo,   Qian Yu,   Zhaobin Feng,   Hong Liu  and  Xiangang Xu, “Surfactantless photochemical growth of Ag nanostructures on GaN epitaxial films with controlled morphologies and their application for SERS,” J. Mater. Chem., 22, 2410 (2012).
  17. Ruijun Wang, Duo Liu*, Zhiyuan Zuo, Qian Yu, Zhaobin Feng, and Xiangang Xu , “Metal-assisted electroless fabrication of nanoporous p-GaN for increasing the light extraction efficiency of light emitting diodes,” AIP Advances, 2, 021109 (2012).
  18. Ruijun Wang*, Stephan Sprengel, Anton Vasiliev, Gerhard Boehm, Roel Baets, Markus-Christian Amann, and Gunther Roelkens, “Widely tunable III-V-on-silicon Vernier lasers operating in the 2.3 um wavelength range,” in Conference on Lasers and Electro-Optics 2018 (CLEO 2018, Invited), paper STh1B.3 (2018).
  19. Ruijun Wang, Muhammad Muneeb, Anton Vasiliev, Aditya Malik, Stephan Sprengel, Gerhard Boehm, Ieva Simonyte, Augustinas Vizbaras, Kristijonas Vizbaras, Roel Baets, Markus-Christian Amann, Gunther Roelkens, “III-V/silicon photonic integrated circuits for spectroscopic sensing in the 2 μm wavelength range,” in SPIE Photonics West 2018 (Invited), paper 10536-2 (2018).

奖励: 

国家优秀留学生奖学金    2017 

山东大学优秀硕士论文    2013