代表性学术成果: 科研项目: 1、主动式太赫兹表面等离激元耦合调控超表面器件研究,国家自然科学基金面上项目,纵向科研项目,2023.01-2026.12,59万元,负责人,在研。 2、利用近场增强实现基于石墨烯和超材料复合结构的可调谐非线性太赫兹调制器件,国家自然科学基金青年项目,纵向科研项目,2018.01-2020.12,25万元,负责人,结题。 3、基于电磁诱导透明超表面的新型太赫兹表面波激发控制研究,天津市教委科研计划重点项目,纵向科研项目,2023.01-2025.12,20万元,负责人,在研。 4、基于超表面和轨道角动量复用的太赫兹表面等离激元研究,广西光电信息处理重点实验室开放项目,横向科研项目,2022.12-2025.12,5万元,负责人,在研。 5、基于石墨烯和超材料的主动式太赫兹调制器件,天津市成像与感知微电子技术重点实验室开放项目,横向科研项目,2021.09-2022.08,2万元,负责人,结题。 代表论文、专利(第一作者或通讯作者): 1、 Hao Su, Quan Li*, Guanghong Xu, Hai Huang, and Shuang Wang. Active control of polarization-dependent terahertz surface plasmonic wave excitation using coupled graphene-metal hybrid metasurfaces. Physica Scripta, 2024, 99, 025526. (SCI三区) 2、 Guanghong Xu, Quan Li*, Hao Su, Hai Huang, and Shuang Wang, VO2-based metasurface for dynamically tunable terahertz surface plasmonic waves, Materials Research Express, 2024, 11, 075801. (SCI四区) 3、 Quan Li*, Hao Su, Guanghong Xu, Tai Chen, Xueqian Zhang*, and Shuang Wang*. Active control of terahertz surface plasmonic wave excitation using electromagnetically induced transparency based graphene metasurfaces. Optics Express, 2023, 31, 37452. (SCI二区,Top期刊) 4、 Jie Han, Yuehong Xu, Huifang Zhang, Yuanhao Lang, Xiaohan Jiang, Xieyu Chen, Xi Feng, Li Niu, Yanfeng Li, Xueqian Zhang*, Quan Xu*, Quan Li*, Jiaguang Han, and Weili Zhang. Tailorable polarization-dependent directional coupling of surface plasmons. Advanced Functional Materials, 2022, 32, 2111000. (SCI一区,Top期刊) 5、 Quan Li*, Hao Su, Jun Zhu, and Shuang Wang*. Active control of dual electromagnetically induced transparency in terahertz graphene-metal hybrid metasurfaces. Frontiers in Materials, 2022, 9, 966535. (SCI三区) 6、 Xi Feng, Qingwei Wang, Yongchang Lu, Quan Xu*, Xueqian Zhang*, Li Niu, Xieyu Chen, Quan Li*, Jiaguang Han, and Weili Zhang. Direct emission of broadband terahertz cylindrical vector Bessel beam. Applied Physics Letters, 2021, 119, 221110. (SCI二区,Top期刊) 7、 Shanshan Liu, Quan Li*, Jun Zhu, Guangda Lu, Tai Chen, and Shuang Wang*. Robust analogue of electromagnetically induced transparency for stable meta-devices. Materials Research Express, 2021, 8, 035801. (SCI三区) 8、 刘姗姗,李泉*,杨子榆,路光达,王爽. 基于石墨烯-金属复合超材料结构的电磁诱导透明非线性调制. 中国激光, 2021, 48, 1918006. (EI) 9、 李泉*,刘姗姗,路光达,王爽. 利用石墨烯-金属复合结构实现太赫兹电磁诱导透明超表面主动调控. 红外与激光工程, 2021, 50, 20210246. (EI) 10、 Quan Li*, Manoj Gupta, Xueqian Zhang, Shuang Wang, Tai Chen, Ranjan Singh, Jiaguang Han*, and Weili Zhang*. Active control of asymmetric Fano resonances with graphene–silicon-integrated terahertz metamaterials. Advanced Materials Technologies, 2020, 5, 1900840. (SCI二区) 11、 Quan Li*, Shanshan Liu, Xueqian Zhang*, Shuang Wang, and Tai Chen. Electromagnetically induced transparency in terahertz metasurface composed of meanderline and U-shaped resonators. Optics Express, 2020, 28, 8792–8801. (SCI二区,Top期刊) 12、 Quan Li*, Yuqi Luo, Shanshan Liu, Xiuming Li, Shuang Wang, and Tai Chen. Switching of plasmonic resonances in multi-gap resonators at terahertz frequencies. Materials Research Express, 2020, 7, 055801. (SCI四区) 13、 Quan Li*, Shuang Wang, and Tai Chen. Nonlinear modulation of plasmonic resonances in graphene-integrated triangular dimers at terahertz frequencies. Materials, 2019, 12, 2466. (SCI三区) 14、 Quan Li, Longqing Cong, Ranjan Singh*, Ningning Xu, Wei Cao, Xueqian Zhang, Zhen Tian*, Liangliang Du, Jiaguang Han*, and Weili Zhang. Monolayer graphene sensing enabled by the strong Fano-resonant metasurface. Nanoscale, 2016, 8, 17278–17284. (SCI一区, Top期刊) 15、 Quan Li, Zhen Tian*, Xueqian Zhang, Ranjan Singh*, Liangliang Du, Jianqiang Gu, Jiaguang Han*, and Weili Zhang. Active graphene-silicon hybrid diode for terahertz waves. Nature Communications, 2015, 6, 7082. (SCI一区,Top期刊) 16、 Quan Li, Zhen Tian*, Xueqian Zhang, Ningning Xu, Ranjan Singh, Jianqiang Gu, Peng Lv, Lin-Bao Luo, Shuang Zhang, Jiaguang Han*, and Weili Zhang*. Dual control of active graphene-silicon hybrid metamaterial devices. Carbon, 90, 2015, 146–153. (SCI一区,Top期刊) 17、 Quan Li, Xueqian Zhang, Wei Cao, Akhlesh Lakhtakia, John F. O’Hara, Jiaguang Han*, and Weili Zhang. An approach for mechanically tunable, dynamic terahertz bandstop filters. Applied Physics A-Materials Science & Processing, 2012, 107, 285–291. (SCI三区) 18、 一种超稳定型电磁诱导透明超表面,实用新型专利,ZL 2020 2 0268257.6. (已完成成果转让) 科技奖励: 1、 太赫兹亚波长光子学调控研究,教育部自然科学奖一等奖,第7完成人,2019年。 |