发表学术论文140余篇,论文总被3200多次,单篇最高被引190多次,H指数32,主持国家级与省部级项目10余项(其中国家自然科学基金项目3项)
近3年代表性工作: 详见:https://photonics.usst.edu.cn/Publications/list.htm Yuanyuan Fan, Shengli Pu*, Dihui Li, Yongliang Zhao, Min Yuan, Jia Wang, and Weinan Liu, “Bilaterally polished photonic crystal fiber magnetic field sensor based on lossy mode resonance,” IEEE Sensors Journal 22(24), 23786-23792 (2022). Weinan Liu, Shengli Pu*, Zijian Hao, Jia Wang, Yuanyuan Fan, Chencheng Zhang, and Jingyue Wang, “Fiber-optic vector-magnetic-field sensor based on gold-clad bent multimode fiber and magnetic fluid materials,” Materials 15(20), 7208 (2022). Zijian Hao, Yongxi Li, Shengli Pu*, Jia Wang, Fan Chen, and Mahieddine Lahoubi, “Ultrahigh-performance vector magnetic field sensor with wedge-shaped fiber tip based on surface plasmon resonance and magnetic fluid,” Nanophotonics 11(15), 3519-3528 (2022). Zijian Hao, Shengli Pu*, Jia Wang, Weinan Liu, Chencheng Zhang, Yuanyuan Fan, and Mahieddine Lahoubi, “Dual-channel temperature-compensated vector magnetic field sensor based on lab-on-a-fiber-tip,” Optics Express 30(14), 25208-25218 (2022). Chencheng Zhang, Shengli Pu*, Zijian Hao, Boyu Wang, Min Yuan, and Yuxiu Zhang, “Magnetic field sensing based on whispering gallery mode with nanostructured magnetic fluid-infiltrated photonic crystal fiber,” Nanomaterials 12(5), 862 (2022). [Cover Article] Yuxiu Zhang, Shengli Pu*, Yongxi Li, Zijian Hao, Dihui Li, Shaokang Yan, Min Yuan, and Chencheng Zhang, “Magnetic field and temperature dual-parameter sensor based on nonadiabatic tapered microfiber cascaded with FBG,” IEEE Access 10, 15478-15486 (2022). Dihui Li, Shengli Pu*, Yongxi Li, Min Yuan, and Mahieddine Lahoubi, “Magnetically tunable fiber polarization beam splitter,” Instrumentation Science & Technology 50(2), 132-145 (2022). Min Yuan, Shengli Pu*, Dihui Li, Yongxi Li, Zijian Hao, Yuxiu Zhang, Chencheng Zhang, and Shaokang Yan, “Extremely high sensitivity magnetic field sensing based on birefringence-induced dispersion turning point characteristics of microfiber coupler,” Results in Physics 29, 104743 (2021). Zijian Hao, Shengli Pu*, Yongxi Li, and Dihui Li, “Vector magnetic field sensor based on orthogonal off-set spliced optical fiber cladded with magnetic fluid,” Journal of the Optical Society of America B 38(9), 2494-2501 (2021). Yongxi Li, Shengli Pu*, Zijian Hao, Shaokang Yan, Yuxiu Zhang, and Mahieddine Lahoubi, “Vector magnetic field sensor based on U-bent single-mode fiber and magnetic fluid,” Optics Express 29(4), 5236-5246 (2021). [ESI高被引] Shaokang Yan, Shengli Pu*, Yuxiu Zhang, Min Yuan, and Chencheng Zhang, “Sensing properties of graphene-oxide-functionalized single-mode–no-core–single-mode fiber structure,” Results in Physics 25, 104310 (2021). Jilei Yao, Shengli Pu*, Yongxi Li, Rui Zhang, and Zixuan Jia, “Sensing properties of thinned phase-shifted fiber Bragg gratings,” Sensors and Materials 32(10) 3335-3342 (2020). Dihui Li, Shengli Pu*, Yongliang Zhao, Yongxi Li, Zijian Hao, and Zhongxue Han, “Sensing properties of symmetrical side-polished photonic crystal fiber based on surface plasmon resonance,” Optik 224, 165662 (2020). Yongxi Li, Shengli Pu*, Yongliang Zhao, Jilei Yao, and Kai Qian, “Refractive-index-matched coupling generated by magnetic fluid around cladding removed multimode optical fiber,” Optical Fiber Technology 59, 102326 (2020).
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