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刘强
2018-07-16 16:01   审核人:

刘强生于19883月,副教授邮箱:liuqiang@neuq.edu.cn

教育经历:

2013.9-2018.6 燕山大学 博士;

2009.9-2013.7 燕山大学 本科

工作经历:

2018.7 东北大学秦皇岛分校,控制工程学院, 副教授

主要研究方向:

光电材料与特种光纤;光纤传感技术;微纳光纤制备

主要研究成果:

[1] Liu Qiang, Li Shuguang, and Chen Hailiang (2018). Enhanced sensitivity of temperature sensor by a PCF with a defect core based on Sagnac interferometer. Sensors and Actuators B: Chemical,254 636641.

[2] Liu Qiang, Li Shuguang, and Wang Xinyu (2017). Sensing characteristics of a MF-filled photoniccrystal fiber Sagnac interferometer for magnetic field detecting. Sensors and Actuators B:Chemical242, 949-955.

[3] Liu Qiang, Li Shuguang, Li Jianshe, Dou Chao, Wang Xinyu, Wang Guangyao, and Shi Min(2016). Tunable fiber polarization filter by filling different index liquids and gold wire into photoniccrystal fiber. Journal of Lightwave Technology, 34(10), 2484-2490.

[4] Liu Qiang, Li Shuguang, Li Jianshe, Chen Hailiang, Fan Zhenkai, An Guowen, and Zi Jianchen(2016). Photonic Crystal Fiber Polarization Filter Based on Coupling Between Core Mode andSPP Mode. Plasmonics, 11(3), 857-863.

[5] Liu Qiang, Li Shuguang, Chen Hailiang, Fan Zhenkai, and Li Jianshe (2015). Photonic crystalfiber temperature sensor based on coupling between liquid-core mode and defect mode. IEEEPhotonics Journal, 7(2), 1-9.

[6] Liu Qiang, Li Shuguang, Chen Hailiang, Li Jianshe, and Fan Zhenkai (2015). High-sensitivityplasmonic temperature sensor based on photonic crystal fiber coated with nanoscale gold film.Applied Physics Express, 8(4), 046701.

[7] Liu Qiang, Li Shuguang, and Chen Hailiang (2015). Two kinds of polarization filter based on photonic crystal fiber with nanoscale gold film. IEEE Photonics Journal, 7(1), 1-11.

[8] Liu Qiang, Li Shuguang, Li Hui, Zi Jianchen, Zhang Wan, Fan Zhenkai, and Bao Yajie (2015).Broadband single-polarization photonic crystal fiber based on surface plasmon resonance for polarization filter. Plasmonics, 10(4), 931-939.

[9] Liu Qiang, Li Shuguang, Fan Zhenkai, Zhang Wan, Zi Jianchen, and Li Hui (2015). Numerical analysis of high extinction ratio photonic crystal fiber polarization splitter based on ZnTe glass.Optical Fiber Technology, 21, 193-197.

[10] Liu Qiang, Li Shuguang, Dou Chao, and Wang Xinyu (2017). Defected-core photonic crystal fiber magnetic field sensor based on Sagnac interferometer. Applied Physics B, 123(3), 65.

[11] Liu Qiang, Li Shuguang, and Shi Min (2016). Fiber Sagnac interferometer based on a liquid-filled photonic crystal fiber for temperature sensing. Optics Communications, 381, 1-6.

[12] Liu Qiang, Li Shuguang, Wang Xinyu, and Shi Min (2016). Theoretical simulation of a polarization splitter based on dual-core soft glass PCF with micron-scale gold wire. Chinese Physics B,25(12), 124210.  

[13] Liu Qiang, Li Shuguang, Gao Xinyu, and Feng Xinxing (2017). Simulation of a short and broadband polarization splitter based on photonic crystal fiber filled with tellurite glass. Optical and Quantum Electronics, 49(2), 60.

[14] Liu Qiang, Li Shuguang, Li Jianshe, and Chen Hailiang (2017). Ultrashort and high-sensitivity refractive index sensor based on dual-core photonic crystal fiber. Optical Engineering, 56(3),037107-037107.                                                            [15] Liu Qiang, Li Shuguang.  Highly sensitive plasmonics temperature sensor based on photonic crystal fiber with a liquid core, Optics communication. (Submitted)

[16] Liu Qiang, et al. Highly sensitive magnetic field sensor based on dual-core PCF with two defect cores, Sensors and Actuators B: Chemical. (Submitted)

[17] Liu Qiang, High-sensitivity temperature sensor based on liquid-core photonic crystal fiber coated with nanoscale gold film, Optics FrontierThe 9th International Conference on Information Optics and Photonics, 2017.07.17-2017.07.20, Harbin, China. Poster

学术兼职及社会任职

Optics Express;Optical Fiber Technology; Optical and Quantum Electronics;Frontiers of Optoelectronics 等期刊审稿人

 

 

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