访 问 量:次
- 联系方式:
- 工作地址:工6-204
- 工作邮箱:chenhaibin@xatu.edu.cn
- 研究方向:光纤传感与光电测量
团队网页
基本信息个人简介:
副教授,博士生导师。2004年于哈尔滨工业大学航天学院获电子科学与技术系(光电子方向)学士学位,2010年 于浙江大学光电工程学院获光学工程工学博士学位。2010年5月进入西安工业大学光电工程学院工作,于2018年晋升副教授、2021年被聘为光学工程学科博导。
主要研究方向为光纤传感技术、瞬态光电测量技术、飞秒激光微纳加工技术、嵌入式系统与智能仪器。主持陕西省自然科学基金、国家重点实验室基金、陕西省教育厅协同中心重点项目等纵向科研项目4项。在Optics Express、Journal of Lightwave Technology、Chinese Optics Letters等国内外光学领域重要期刊发表论文60余篇,授权发明专利13项,编著《光电子材料与器件》教材。在光纤微结构制备与光纤传感技术、瞬态光电测量技术等方面具有专长。获陕西省科技工作者创新创业竞赛银奖、陕西省教学成果二等奖1项、陕西省优秀教材一等奖1项,指导研究生获竞赛奖励20余人次,获国家奖学金2人次,获2021年西安工业大学优秀硕士论文指导教师。
学习经历:
2000年 ~ 2004年 哈尔滨工业大学航天学院 电子科学与技术(光电子方向)
2004年 ~ 2010年 浙江大学光电工程学院 光学工程
讲授过的课程:
1. 电磁场与电磁波
2. 集成光电子学
3. 电子科学与技术专业学科前沿系列讲座
4. 电子科学与技术专业导论
5. 电子科学与技术专业实验I
6. 高等光学(研究生、留学生)
7. 光纤传感技术(研究生)
8. 目标探测与识别(研究生)
主要论文:
[1] JiaHao Guo, Wei Wang, JunYing Zhang, YaLin Yu, ZiLong Guo, XiongXing Zhang, DaRu Chen, HaiBin Chen, "Cladding gratings fabricated using femtosecond laser plane by plane inscription for vectorial curvature sensing," Optics and Lasers in Engineering, vol. 190, 108983, 2025.
[2] Ruixiang Chen, Haibin Chen, Yujun Du, Jiahao Guo, Junying Zhang, Zilong Guo, "Femtosecond Laser Inscribed In-Fiber Mach–Zehnder Interferometer of Cladding Waveguide and Fiber Bragg Grating for Simultaneous Measurement of Twist Angle and Temperature," IEEE Sensors Journal, vol. 25, no. 7, pp. 11075-11081, 1 April 2025.
[3] Weichen Chen, Wei Wang, Junying Zhang, Yalin Yu, Xiongxing Zhang, Yujun Du, Haibin Chen, "Dual-Wavelength Fiber Laser Inscribed by Femtosecond Laser in High-Erbium-Doped Fiber," IEEE Photonics Technology Letters, vol. 37, no. 18, pp. 1053-1056, 15 Sept. 2025.
[4] Huiming Su, Haibin Chen, Wei Wang and JiaHao Guo, "The fabrication of single mode fiber cladding waveguides FBG using femtosecond lasers and the precise measurement of curvature vectors," Measurement Science and Technology, vol. 36, no. 8, 085207, 2025.
[5] Guanghai Liu, Ming Gao, Changjiang Liu, Yusheng X, Xiongxing Zhang, Haibin Chen, "High-speed multi-spectral explosion temperature measurement using golden-section accelerated Pearson correlation algorithm," 2025, 23(1): 20250138.
[6] Wen Pan, Haolei Wang, Xiaojun Feng, Haibin Chen, "Femtosecond laser inscribed fiber Bragg grating and Mach-Zehnder interferometer cascade sensing structure for temperature and relative humidity simultaneous measurement," Optical Fiber Technology, vol. 86, 103851, 2024.
[7] Xiongxing Zhang, Jiangxiao Qian, Wei Wang, Haibin Chen, "Fiber-Optic Vector Magnetic Field Sensors Based on Magnetic Fluid: Progress and Prospect," IEEE Transactions on Instrumentation and Measurement, vol. 73, pp. 1-13, 2024.
[8] JiaHao Guo, JunYing Zhang, LinPeng Dong, YuJun Du, ZiLong Guo, HaiBin Chen, DaRu Chen, Wei Wang, "Parallel waveguide fiber Bragg gratings – Used for detecting human respiratory rate, trunk status, and pulse," Optics & Laser Technology, vol. 181, 111960, 2025 (available online 2024).
[9] Jiangxiao Qian, Wei Wang, Haibin Chen, Junying Zhang, Guanghai Liu, Zilong Guo, Xiongxing Zhang and Xiaohui Li, "In-Fiber Breathing Monitoring Sensor by Micro-Tapered Long-Period Grating Structure," IEEE Sensors Journal, 23(1):154-158, 2023.
[10] Zilong Guo, Yu Bai, Wei Zhang, Sitong Liu, Yongqiang Pan, Xiongxing Zhang, Junying Zhang, Haibin Chen, Xiaohui Li, "Temperature compensated magnetic field sensor based on magnetic fluid infiltrated cascaded structure of micro-tapered long-period fiber grating and fiber Bragg grating," Sensors and Actuators A: Physical, vol. 358, 114425, 2023.
[11] Haolei Wang, Jiangxiao Qian, Xiongxing Zhang, Junying Zhang, Xiaohui Li, Linpeng Dong, Jia Yu, Haibin Chen, "Miniature fiber-optic near-surface gap-coupled cladding waveguide Mach-Zehnder interferometric refractive index sensor inscribed by femtosecond laser," Optics & Laser Technology, vol. 166, 109649, 2023.
[12] Weiguang Zhang, Zhixia Duan, Yixuan Guo, Qize Zhong, Haolei Wang, Xiongxing Zhang, Haibin Chen, Junying Zhang, Zilong Guo, Wei Wang, and Xiaohui Li, "Transparent nanopaper for ultrashort pulse generation in the near-infrared region," Applied Optics, vol. 62, pp. 7163-7168, 2023.
[13] Jiawen Kang, Haibin Chen*, Xiongxing Zhang, Junying Zhang, Zilong Guo, Wei Wang, "Valley-positioning-assisted discrete cross-correlation algorithm for fast cavity length interrogation of fiber-optic Fabry–Perot sensors," Measurement, vol. 198, 111411, 2022.
[14] Nie, Liang, Xiaonan Li, Hongwei Chen, Junying Zhang, Haibin Chen, Xueqing Zhao, Sheng Wang, and Guanghai Liu, "Cavity Length Sequence Matching Algorithm Based on Combined Valley Peak Positioning for Fiber-Optic Fabry-Perot Sensors," Photonics, 2022, 9(7): 451.
[15] Zhang, Weiguang, Jia Yu, Xiongxing Zhang, Haibin Chen, Junying Zhang, and Wei Wang, "High-Precision Cavity Length Demodulation Method for Fiber-Optic Fabry–Perot Sensors Based on DualSuperluminescent Diodes," Sensors, 2022, 22, 5898.
[16] Junying Zhang, Xiongxing Zhang, Zilong Guo, Haibin Chen, Yang Chen, Wei Wang, "Fundamental and high-order cross-correlation combined demodulation method for absolute cavity length measurement of fiber-optic Fabry-Perot sensors," Optical Engineering, 61(9), 096102 (2022).
[17] Zhang, Xiongxing and Li, Hu and Wang, Wei and Zhang, Junying and Guo, Zilong and Liu, Guanghai and Zheng, Gang and Chen, Haibin, "Dual-Wavelength Differential Cross Multiplication Method for Dynamic Cavity Length Interrogation of Fiber-Optic Fabry-Perot Vibration Sensors," IEEE 10th International Conference on Information, Communication and Networks (ICICN), Zhangye, China, 2022, pp. 297-302.
[18] Haibin Chen, Tianchong Xie, Jiashuang Feng, Xiongxing Zhang*, Wei Wang, Yanping Li, and Zilong Guo, "A Miniature Fiber Tip Polystyrene Microsphere Temperature Sensor With High Sensitivity," Photonic Sensors, 2022, 12(1): 84–90 (published in 2022 but listed under 2021 in the file).
[19] Zilong Guo*, Cang Chen, Junying Zhang, Xiongxing Zhang, Haibin Chen, "Demodulation of fiber-optic Fabry-Perot sensors through a double-frequency self-correlation method," Optical Fiber Technology, 2021, 64:102563.
[20] Junying Zhang, Fengyi Chen, Ruohui Wang, Xueguang Qiao*, Haibin Chen, Xiongxing Zhang, "Vector magnetic field measurement based on magnetic fluid and high-order cladding-mode Bragg grating," Optics & Laser Technology, vol. 143, 107264, 2021.
[21] Junying Zhang*, Yuanyuan Jiang, Xiongxing Zhang, Haibin Chen, Zilong Guo, and Wei Wang, "Magnetic field vector sensor based on a cascaded structure of core-offset Fabry–Perot interferometer and a magnetic fluid infiltrated glass capillary," Journal of the Optical Society of America B, 2021, 38(10): 2902-2907.
[22] Zhang junying*, Tian Chen, Wang Ruohui, Chen Haibin, Zhang Xiongxing, Wang Wei, Guo Zilong, "Fiber-optic whispering-gallery-mode magnetic field sensor based on magnetic fluid infiltrated hollow core fiber," Microwave and Optical Technology Letters, 2021, 63(9):2442-2448.
[23] Wenting Yang, Wei Wang*, Haibin Chen, Xiongxing Zhang, Zilong Guo, Junying Zhang, "Fiber-optic multimode interferometric curvature sensor based on small-inner-diameter hollow core fiber," Optical Fiber Technology, 2021, vol. 67, 102749.
[24] Guanghai Liu, Ming Gao, Wei Wang*, Xiongxing Zhang, Haibin Chen, Zilong Guo, Junying Zhang, "All-fiber beat-frequency laser heterodyne absolute distance measurement system," Optical Engineering, 60(11), 117109 (2021).
[25] Junying Zhang*, Chen Tian, Zilong Guo, Xiongxing Zhang, Haibin Chen, and Wei Wang, "Fiber-optic vector magnetic field sensor based on a magnetic-fluid-infiltrated large-core-offset Mach–Zehnder interferometer," Applied Optics, 60(34): 10548-10554 (2021).
[26] Haibin Chen, Yao Zhang, Yang Li, Xin Jing, Suzhe Yuan, Xiongxing Zhang, Wei Wang*, Rong Liu, and Quanmin Guo, "Squared peak-to-peak algorithm for the spectral interrogation of short-cavity fiber-optic Fabry–Perot sensors," Applied Optics, 2020, 59(4):1198-1205.
[27] Haibin Chen, Jie Liu, Xiongxing Zhang, Wei Wang*, Zhibo Ma, Wentao Lv, Zilong Guo, "High-order harmonic-frequency cross-correlation algorithm for absolute cavity length interrogation of white-light fiber-optic Fabry-Perot sensors," IEEE/OSA Journal of Lightwave Technology, 2020, 38(4):953-960.
[28] Xiongxing Zhang, Wei Wang*, Haibin Chen, Ying Tang, Zhibo Ma and Kening Wang, "Two-Parameter Elliptical Fitting Method for Short-Cavity Fiber Fabry–Perot Sensor Interrogation," Sensors, 2019, 19(1), 36.
[29] Zilong Guo, Wentao Lv, Wei Wang*, Qingqing Chen, Xiongxing Zhang, Haibin Chen, and Zhibo Ma, "Absolute Single Cavity Length Interrogation of Fiber-Optic Compound Fabry-Perot Pressure Sensors Through a White Light Non-Scanning Correlation Method," Sensors, 2019, 19(7), 1628.
[30] Xiongxing Zhang, Yanping Li, Wei Wang*, Haibin Chen, Zilong Guo, and Yuxiang Yang, "Non-zero-drift differential all-fiber-optic heterodyne Doppler measurement system," Optical Engineering, 2019, 58(5), 056108.
[31] Zhibo Ma, Tongxin Guo, Tianyang Zhang, Wei Wang*, Haibin Chen, Xiongxing Zhang, Weizheng Yuan, "Compact Powell lens based low-coherence interferometer for fiber-optic Fabry-Perot sensors interrogation," IEEE Photonics Journal, 2019, 11(4), Article Sequence Number: 7102111.
[32] Xiongxing Zhang, Yadong Jing, Wei Wang*, Haibin Chen, Zhibo Ma, Jiashuang Feng, and Zilong Guo, "A Non-Contact All-fiber-Optic Laser Doppler Accelerometer," Optics Express, 2019, 27(14), 19887.
[33] Tianyang Zhang, Wei Wang*, Haibin Chen, Xiongxing Zhang, Zhibo Ma, Wentao Lv, "Extrinsic Fabry-Perot interferometric cavity-based fiber-optic spectrum equalization filter for the Gaussian spectrum of superluminescent diodes," Applied Optics, 2019, 58(23):6228-6232.
[34] Zhibo Ma, Shaolei Cheng, Wanying Kou, Haibin Chen, Wei Wang*, Xiongxing Zhang, Tongxin Guo, "Sensitivity-enhanced Extrinsic Fabry–Perot Interferometric Fiber-optic Strain Sensor," Sensors, 2019, 19(19), 4097.
[35] Haibin Chen, Qingqing Chen, Wei Wang*, Xiongxing Zhang, Zhibo Ma, Yang Li, Xin Jing, and Suzhe Yuan, "Fiber-optic, extrinsic Fabry–Perot interferometric dual-cavity sensor interrogated by a dual-segment, low-coherence Fizeau interferometer for simultaneous measurements of pressure and temperature," Optics Express, 2019, 27(26): 38744-38758.
[36] Zhibo Ma, Zechen Song, Xirui Huang, Tongxin Guo, Weizheng Yuan, Haibin Chen, Tianyang Zhang, Wei Wang*, "A zero-cross detection algorithm for cavity length interrogation of fiber-optic Fabry-Perot sensors," Sensors, 2019, 19(18), 3868.





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