温坤华

作者: 时间:2021-09-09 点击数:

姓名 温坤华  WEN KUNHUA     教授

所属学院:

物理与光电工程学院

导师类别:

硕士生导师

务:

物理与光电工程学院 副院长

科研方向:

光纤传感、微纳光电子器件

联系方式:

khwen@gdut.edu.cn

硕士招生学院:

物理与光电工程学院

 



个人简述

 

温坤华,博士,教授,硕士生导师。研究兴趣包括:光纤传感技术、微纳光电子器件多年来主要围绕高性能光纤传感技术、微纳结构的光子器件等领域开展了系列创新性工作,已发表相关SCI论文50余篇,总引用1000余次(Google Scholar),共申请发明专利10余项,授权发明专利5项,参编书籍1本。累计主持和承担国家自然科学基金面上项目、国防科工局基础科研计划课题、NSFC-广东省联合基金子课题、广东省科技计划等项目8项,担任国家自然科学基金以及多省市科技计划的通讯评审专家,曾担任SCI期刊Frontiers in Physics主题编辑,是Optics Express,Optics Letters,Journal of Lightwave Technology,Optics Communications等国内外重要学术期刊上的审稿专家。



学科领域

光学工程、电子科学与技术、通信与信息系统



教育背景

1. 2007/09—2013/07,西南交通大学,信息科学与技术学院通信工程系,博士(硕博连读);
2. 2003/09—2007/07,西南交通大学,信息科学与技术学院通信工程系,本科。



工作经历

2024.01-至今,广东工业大学,物理与光电工程学院,教授,硕士生导师

2017.01-2023.12,广东工业大学,物理与光电工程学院,副教授,硕士生导师

2013.07-2016.12,广东工业大学,物理与光电工程学院,光信系副主任,讲师



主要论文

1、S. X. Chen, L. Zeng, J. Q. Li, J. Weng, J. Y. Li, P. B. Xu, W. J. Liu, Y. H. Sun, J. Yang, Y. W. Qin, K. H. Wen*, “Multiple plasmon-induced transparency based on black phosphorus and graphene for high-sensitivity refractive index sensing,” Optics Express, 30 (24): 44004-44017, 2022.

2、Z. J. Jiang, F. G. Wu*, J. Yang, K. H. Wen*, P. B. Xu, Z. J. Yu, J. Q. Sun, Y. C. Wang, Y. W. Qin, “Combined-Vernier effect based on hybrid fiber interferometers for ultrasensitive temperature and refractive index sensing”, Optics Express, 30(6): 9578-9589, 2022.

3、J. Y. Li, J. Weng, J. Q. Li, S. X. Chen, Z. C. Guo, P. B. Xu, W. J. Liu, K. H. Wen*, Y. W. Qin, “Dynamic manipulation of plasmon induced transparency with parallel-orthometric graphene strips structure,” Results in Physics, 40: 105816, 2022.

4、S. X. Chen, L. Zeng, J. Q. Li, J. Weng, J. Y. Li, Z. C. Guo, P. B. Xu, W. J. Liu, J. Yang, Y. W. Qin, K. H. Wen*, “Tunable plasmon-induced transparency with coupled L-shape graphene metamaterial,” Results in Physics, 38: 105537, 2022.

5、J. Y. Li, J. Weng, J. Q. Li, S. X. Chen, Z. C. Guo, P. B. Xu, W. J. Liu, K. H. Wen*, Y. W. Qin, “Switchable triple plasmon-induced transparency in graphene sandwich metamaterial structures,” Journal of Physics D: Applied Physics, 55(44): 445101, 2022.

6、Z. C. Guo, J. Y. Li, J. Weng, J. Q. Li, S. X. Chen, P. B. Xu, W. J. Liu, K. H. Wen*, Y. W. Qin “Multiple and tunable plasmon induced transparency with L-shape graphenestrips structure at terahertz frequency,” Optics Communications, 521: 128559, 2022.

7、S. X. Chen, J. Y. Li, Z. C. Guo, L. Chen, K. H. Wen*, P. B. Xu, J. Yang, Y. W. Qin, “Dynamically tunable plasmon-induced transparency effect based on graphene metasurfaces,” Journal of Physics D: Applied Physics,55(11): 115105, 2021.

8、Zhengfeng Li, K. H. Wen*, Yihong Fang, Zicong Guo, “Refractive Index Sensing Research on Multi-Fano-Based Plasmonic MDM Resonant System With Water-Based Dielectric,” IEEE Journal of Quantum Electronics, 56(3):1-7, 2020.

9、ZhengfengLi, K. H. Wen*, Li Chen, Liang Lei, Jinyun Zhou, Dongyue Zhou, Yihong Fang, Yuwen Qin, “Manipulation of Multiple Fano Resonances Based on a Novel Chip-Scale MDM Structure,” IEEE ACCESS, 8: 32914-32921, 2020.

10、Yihong Fang, K. H. Wen*, Zhengfeng Li, Bingye Wu, Li Chen, Jinyun Zhou, Dongyue Zhou, Multiple Fano Resonances Based on End-Coupled Semi-Ring Rectangular Resonator, IEEE Photonics Journal, 11(4): 4801308, 2019.

11、Zhengfeng Li, Kunhua Wen, Li Chen, Liang Lei, Jinyun Zhou, Dongyue Zhou, Yihong Fang, Bingye Wu, “Control of Multiple Fano Resonances Based on a Subwavelength MIM Coupled Cavities System,” IEEE ACCESS, 7: 59369-59375, 2019.

12、Yihong Fang, K. H. Wen*, Yuwen Qin, Zhengfeng Li, Bingye Wu, “Multiple fano resonances in an end-coupled MIM waveguide system,” Optics Communications, 452:12-17, 2019.

13、Yihong Fang, K. H. Wen*, Yuwen Qin, Zhengfeng Li, and Bingye Wu. Plasmonic-induced absorption based on an end-coupled combined resonance system of a semiannular cavity and rectangular cavity. Applied Optics, 58(1): 43-49, 2019.

14、K. H. Wen*, L. Chen, J. Y. Zhou, L. Lei, Y. H. Fang, “A Plasmonic chip-scale refractive index sensor design based on multiple Fano resonances,” Sensors, 18(10):3181, 2018.

15、Z. C. Guo, K. H. Wen*, Q. Y. Hu, W. H. Lai, J. Y. Lin, and Y. H. Fang, “Plasmonic Multichannel Refractive Index Sensor Based on Subwavelength Tangent-Ring Metal–Insulator–Metal Waveguide,” Sensors, 18(5): 1348, 2018

16、W. H. Lai, K. H. Wen*, J. Y. Lin, Z. C. Guo, Q. Y. Hu, and Y. H. Fang, “Plasmonic filter and sensor based on a subwavelength end-coupled hexagonal resonator,” Applied Optics, 57(22): 6369-6374, 2018.

17、K. H. Wen*, L. S. Yan*, W. Pan, B. Luo, Z. Guo, Y. H. Guo, X. G. Luo, “Electromagnetically induced transparency-like transmission in a compact side-coupled T-shaped resonator,” Journal of Lightwave Technology, 32(9): 1701-1707, 2014. (2016年ESI高被引论文)

18、K. H. Wen*, Y. H. Hu, J. Y. Zhou, L. Lei, J. F. Li, Y. J. Wu, “Plasmonic-induced absorption in an end coupled metal-insulator-metal resonator structure,” Optical Materials Express, 7(2): 433-443, 2017.

19、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, M. He, L. Lei, Z. M. Meng, “Tunable Multimode Plasmonic Filter Based on Side-Coupled Ring-Groove Joint Resonator,” Plasmonics, 12(2): 427-431, 2017.

20、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, M. He, L. Lei, Y. J. Wu, and J. F. Li, “Single- and dual-plasmonic induced absorption in a subwavelength end-coupled composite-square cavity,” Applied Optics, 56 (30): 8372-8377, 2017.

21、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, M. He, L. Lei, Z. M. Meng, Y. J. Wu, J. F. Li, “Fano resonance based on end-coupled cascaded-ring MIM waveguides structure,” Plasmonics, 12(6): 1875-1880, 2017.

22、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, M. He, L. Lei, Z. M. Meng, “Plasmonic induced absorption and transparency based on a compact ring-groove joint MIM waveguide structure,” IEEE Photonics Journal, 8(5): 4802308, 2016.

23、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, L. Lei, Z. M. Meng,, “Plasmonic bidirectional/unidirectional wavelength splitter based on metal-dielectric-metal waveguides,” Plasmonics, 11(1): 71-77, 2016.

24、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, L. Lei, Z. M. Meng, “Single/dual Fano resonance based on plasmonic metal-dielectric-metal waveguide,” Plasmonics, 11(1): 315-321, 2016.

25、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, M. He, L. Lei, Z. M. Meng, “Multiple Plasmon-Induced Transparency Responses in a Subwavelength Inclined Ring Resonators System,” IEEE Photonics Journal, 7(6): 1-7, 2015.

26、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, L. Lei, Z. Guo, “Fano resonance with ultra-high figure of merits based on plasmonic metal-insulator-metal waveguide,” Plasmonics, 10(1): 27-32, 2015.

27、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, L. Lei, Z. Guo, “Theoretical analysis of plasmonic unidirectional propagation at visible frequency based on subwavelength waveguide,” Optics Communications, 336: 243-247, 2015.

28、K. H. Wen*, Y. H. Hu, L. Chen, J. Y. Zhou, L. Lei, Z. Guo, “A compact and high-efficiency dichroic plasmonic splitter based on asymmetric T-shape waveguide”, Photonics and Nanostructures - Fundamentals and Applications, 13: 120-126, 2015.



知识产权

1、温坤华,翁俊,李嘉琪,曾亮,徐鹏柏,喻张俊,杨军。基于光纤传感的海洋信息感知预警方法、系统及存储介质,发明专利,2022/4/8,专利授权号:ZL202210047154.0,中国。

2、温坤华,翁俊,李嘉琪,曾亮,徐鹏柏,喻张俊,杨军。一种海洋感知数据的融合通信方法及系统,发明专利,2022/4/26,专利授权号:ZL202210097834.3,中国。

3、温坤华,郭子聪,胡钦洋,赖文辉,林继衍,方翼鸿。一种具有环形谐振腔的光谱调控器件,实用新型,授权时间:2018.10.12,专利授权号:ZL201820013031.4,中国。

4、温坤华,赖文辉,林继衍,郭子聪,胡钦洋,方翼鸿。一种具有谐振腔波导的光谱调控器件。实用新型,授权时间:2018.9.14,专利授权号:ZL201721889764.6,中国。

5、郭迎辉,闫连山,温坤华,郭振,陈智宇,潘炜,邹喜华,张志勇。一种等长矩形腔表面等离子带通滤波器调节自由光谱范围的方法2014.07,授权发明专利号:ZL 201210053704.6。

6、张志勇,闫连山,潘炜,罗斌,张兆亭,温坤华。光纤光栅传感器应力测量的差分对光栅解调技术。2012.11,授权发明专利号:ZL 201110187787.3。

7、闫连山,郭振,陈娟,温坤华,潘炜,罗斌,李慧,商科峰。一种表面等离子体输出偏振态的控制方法。2012.12,授权发明专利号:ZL 201110031507.X。



科研项目

1、2022-2025,国家自然科学基金面上项目,基于外光场非线性调控的光纤SPR折射率传感技术研究,58万,主持。

2、2022-2024,国防基础科研计划课题,光纤XXXXX关键技术,110万,主持。

3、2021-2024,国家自然科学基金委-广东省联合基金集成项目,基于光纤新模态的海洋信息感知与大容量安全通信融合技术研究,子课题负责人,118万,主持。

4、2019-2022,广州市科技计划项目,“基于亚波长金属波导结构Fano共振的片上光传感技术研究”,20万,主持。

5、2016-2018,广东省科技计划项目,“面向大规模仓储危险生化品的高灵敏度纳米金属传感器与光纤分布技术研究”,30万,主持。

6、2015-2017,国家自然科学基金,“亚波长金属-介质-金属波导结构的传输特性与密集信道色散补偿研究”,25万,主持。



教学活动

1、2019年,广东工业大学教学成果奖一等奖(排名第四)

2、2021年,第一指导老师获第十六届“挑战杯”广东省课外学术科技作品竞赛一等奖

3、2022年,第一指导教师获第十届全国大学生光电设计竞赛东南赛区二等奖

4、2021-2023,指导本科生国家级大创项目一项

 

 

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