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. |