徐锡镇

作者:时间:2024-12-12点击数:

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徐锡镇,助理教授,博导,深圳大学物理与光电工程学院。2013年浙江工业大学理学院获理学学士学位;2016年深圳大学光电工程学院获工学硕士学位;2019年深圳大学物理与光电工程学院获工学博士学位。目前的研究方向包括:高温力热光纤传感器件及应用、飞秒激光制备光纤光栅技术、蓝宝石光纤传感器、强包层模光纤光栅传感器。

目前已主持项目12项,其中国家自然科学基金2项(面上项目、青年科学基金)、国防科工局揭榜挂帅项目1项、军委装备发展部专项项目1项、国家重点研发计划青年科学家项目子课题1项、广东省自然科学基金2项、中国博士后基金1项、深圳市项目3项、中核集团领创项目1项,成功结题中国博士后基金1项和深圳市项目1项;共发表论文70余篇,其中SCI期刊论文50篇,第一作者8篇、通讯作者10篇,会议论文24篇,第一作者9篇,通讯作者1篇;授权发明专利7项、实用新型17项、申请国际专利5项;获得教育部自然科学奖二等奖1项、广东省光学学会光学科技奖一等奖1项、深圳大学2022年十大科技进展1项入选全球前2%科学家“2023年度科学影响力排行榜担任深圳市南山区物联网光子器件与系统重点实验室副主任,Sensors期刊客座编辑等。


一、工作/教育经历

工作经历

2021/07-至今,深圳大学,物理与光电工程学院,助理教授

2019/06-2021/07,深圳大学,物理与光电工程学院,博士后


教育经历

2016/09-2019/06,深圳大学,光学工程,工学博士

2013/09-2016/07,深圳大学,光学工程,工学硕士

2009/09-2013/07,浙江工业大学,光信息科学与技术,本科、理学学士



二、科研项目

l 国家级项目

1. GF科工局揭榜挂帅项目,超高温xxx关键参数测试技术研究2024/12/01-2027/11/30984万,主持。

2. 军委装备发展部专项项目,xxx测量技术研究,2023/12/01-2025/06/3090万,主持。

3. 国家自然科学基金面上项目,微孔蓝宝石光纤光栅及高温等离子体诊断应用(62375176), 2024/01/01-2027/12/3149万,主持。

4. 国家重点研发计划青年科学家项目子课题,蓝宝石光纤微纳传感器激光加工新工艺研究(2023YFB3208600),2023/12/01-2026/11/3050万,主持。

5. 国家自然科学基金青年科学基金项目,基于全同弱反射蓝宝石光纤光栅阵列的分布式高温传感技术(62005170)2021/01/01-2023/12/3124万,主持。


l 省部级项目

6. 广东省自然科学基金面上项目,飞秒激光成丝刻蚀微孔蓝宝石光纤光栅方法及高温等离子体诊断应用(2024A1515010108),2024/01/01-2026/12/3115万,主持。

7. 广东省自然科学基金粤深联合基金青年项目,基于蓝宝石光纤光栅阵列的分布式高温传感技术(2019A1515111114),2020/01/01-2022/12/3110万,主持。

8. 中国博士后科学基金面上项目,面向航空发动机故障诊断的蓝宝石光纤超高温传感技术(2019M663049),2020/01/01-2021/06/308万,主持。

9. 中国核工业集团有限公司,中核集团领创科研项目,CNNC-LCKY-2024-067,面向高温新质堆的蓝宝石光纤光栅超高温传感技术研究,2024/06/01-2027/06/01, 120万元,在研,主持。


l 市级项目

10. 深圳市高等院校稳定支持计划项目,飞秒激光制备单模蓝宝石光纤光栅高温高压传感器(20220810164735001),2022/10/01-2024/09/3015万,主持。

11. 深圳大学青年教师科研启动项目,基于全同弱反射蓝宝石光纤光栅阵列的分布式高温传感技术,2021/07/01-2021/12/315万,主持。

12. 深圳博士后留深启动项目,蓝宝石光纤光栅高温高压传感器,2021/07/01-2024/06/3030万,主持。

13. 深圳市个人创客项目,面向易燃易爆环境的液位传感器(GRCK2016041314562596),2016/09-2017/0815主持


三、获得奖项

1. 广东省光学学会光学科技奖,光纤力热传感增强机理与方法,一等奖,王义平、廖常锐、靳伟、刘申、何俊、徐锡镇,2022.03.

2. 教育部高等学校科学研究优秀成果奖(科学技术),极端环境光纤力热传感增强机理与关键技术,二等奖,王义平、廖常锐、靳伟、刘申、何俊、徐锡镇,2022.11.

3. 深圳大学2022年十大科技进展,极端环境光纤高温高压传感技术,核心技术类,王义平、何俊、刘申、徐锡镇、白志勇,2023.09.

4. Excellent Paper Award, Review of Femtosecond-Laser-Inscribed Fiber Bragg Gratings: Fabrication Technologies and Sensing Applications, Jun He, Baijie Xu, Xizhen Xu, Changrui Liao & Yiping Wang, 2023.09.


四、发表论文(一作和通讯)

Ø 期刊论文

[1] Zhuoda Li, Qingming Tan, Ziheng Yan, Jia He, Bin Du, Xizhen Xu*, Shen Liu, Changrui Liao, Zhiyong Hu, Libo Gao, Yiping Wang, Jun He, “Reliable wavelength detection method of sapphire fiber Bragg gratings using added multimode fiber, Optics and Laser Technology, 182(112185), 2025. (中科院二区, IF=4.939)

[2] Xizhen Xu, Qingming Tan, Zhuoda Li, Jiafeng Wu, He Li, Jia He, Zhengxi He, Yue Qin, Tao Xu, Zengling Ran, Yiping Wang, and Jun He*, “Sapphire fiber Bragg gratings demodulated with cross-correlation algorithm for long-term high temperature measurement,” IEEE Sensors Journal, 24(6), pp. 7905-7911, 2024. (中科院二区, IF=4.3)

[3] Bin Du, Jun He, Xizhen Xu*, Baijie Xu, Changrui Liao, Cailing Fu, Yatao Yang, Xiaoyu Weng, Liwei Liu, Junle Qu, and Yiping Wang“Femtosecond laser-induced in-fiber composite microcavity array for high-performance distributed high-temperature sensing, IEEE Transactions on instrumentation and measurement, 73(9514409), 2024. (中科院二区, IF=5.6)

[4] Jun He, Zhuoda Li, Xizhen Xu*, Qingming Tan, Xiaoyu Weng, Liwei Liu, Junle Qu, Changrui Liao, and Yiping Wang, “High-temperature strain sensor based on sapphire fiber Bragg grating,” Optics Letters, 49(3), pp. 446-449, 2024. (中科院二区, IF=3.56)

[5] Jun He, Jiafeng Wu, Xizhen Xu*, Changrui Liao, Shen Liu, Xiaoyu Weng, Liwei Liu, Junle Qu, and Yiping Wang, “Femtosecond laser plane-by-plane inscription of Bragg gratings in sapphire fiber,” Journal of Lightwave Technology, 41(22), pp. 7014-7020, 2023. (中科院二区, IF=4.162)

[6] Runxiao Chen, Jun He, Xizhen Xu*, Baijie Xu, Bin Du, Xunzhou Xiao, Ying Wang, Changrui Liao, Xiaoyu Weng, Liwei Liu, Junle Qu and Yiping Wang, “Orientation-dependent accelerometer based on a highly localized fiber Bragg grating, Optics and Laser Technology, 164, 109464, 2023. (中科院二区, IF=4.939)

[7] Jiafeng Wu, Xizhen Xu*, Changrui Liao, Xiaoyu Weng, Liwei Liu, Junle Qu, Yiping Wang and Jun He, “Optimized femtosecond laser direct-written fiber Bragg gratings with high reflectivity and low loss,” Optics Express, 31(3), 3831-3838, 2023. (中科院二区, IF=3.833)

[8] Runxiao Chen, Jun He, Xizhen Xu*, JiafengWu, Ying Wang and Yiping Wang, “High-quality fiber Bragg gratings inscribed by femtosecond laser point-by-point technology, Micromachines, 13, 1808, 2022. (中科院三区, IF=3.523)

[9] Xunzhou Xiao, Jun He, Xizhen Xu*, Runxiao Chen, Bin Du, Yanping Chen, Shen Liu, Cailing Fu, and Yiping Wang, “High-temperature-resistant fiber laser vector accelerometer based on a self-compensated multicore fiber Bragg grating,” Sensors, 22, 6459, 2022. (中科院二区, IF=3.847)

[10] Jun He, Runxiao Chen, Xizhen Xu*, Jia He, Baijie Xu, Shen Liu, Changrui Liao, Dejun Liu, Yuan Gong, and Yiping Wang, “Slit beam shaping for femtosecond laser point-by-point inscription of highly localized fiber Bragg grating,” Journal of Lightwave Technology, 40(16), pp. 5722-5728, 2022. (中科院二区, IF=4.162)

[11] Xizhen Xu, Jun He*, Baijie Xu, Runxiao Chen, Kaiming Yang, Changrui Liao, Yatao Yang, and Yiping Wang, “Slit beam shaping for femtosecond laser point-by-point inscription of high-quality fiber Bragg gratings,” Journal of Lightwave Technology, 39(15), pp. 5142-5148, 2021. (中科院, IF=4.439)

[12] Xizhen Xu, Jun He*, Jia He, Baijie Xu, Runxiao Chen, Ying Wang, Yatao Yang, and Yiping Wang, Efficient point-by-point Bragg grating inscription in sapphire fiber using femtosecond laser filaments,Optics Letters, 46(11), pp. 2742-2745, 2021. (中科院二区, IF=3.56)

[13] Jun He, Ziyong Chen, Xizhen Xu*, Jia He, Baijie Xu, Bin Du, Kuikui Guo, Runxiao Chen, and Yiping Wang, “Femtosecond laser line-by-line inscription of apodized fiber Bragg gratings,” Optics Letters, 46(22), pp. 5663-5666, 2021. (中科院二区, IF=3.56)

[14] Xizhen Xu, Jun He*, Changrui Liao, and Yiping Wang, Multi-layer, offset-coupled sapphire fiber Bragg gratings for high-temperature measurements,Optics Letters, 44(17), pp.4211-4214, 2019. (中科院二区, IF=3.714)

[15] Xizhen Xu, Jun He*, Changrui Liao, Kaiming Yang, Kuikui Guo, Chi Li, Yunfang Zhang, Zhengbiao Ouyang, and Yiping Wang, “Sapphire fiber Bragg gratings inscribed with a femtosecond laser line-by-line scanning technique,” Optics Letters, 43(19), pp.4562-4565, 2018. (中科院二区, IF=3.866)

[16] Xizhen Xu, Jun He*, Maoxiang Hou, Shuhui Liu, Zhiyong Bai, Ying Wang, Changrui Liao, Zhengbiao Ouyang, and Yiping Wang, A miniature fiber collimator for highly sensitive bend measurements, Journal of Lightwave Technology, 36(14), pp. 2827-2833, 2018. (中科院二区, IF=4.162)

[17] Xizhen Xu, Ying Wang*, Shen Liu, Changrui Liao, Jun He, Jiarong Lian, and Yiping Wang*, Growth dynamics of ZnO nanowire on a fiber-tip air bubble, Optical Materials Express, 25(18), PP.3433-3440, 2017. (中科院二区,IF=2.566)

[18] Xizhen Xu, Jian Tang, Jing Zhao, Kaiming Yang, Cailing Fu, Qiao Wang, Shen Liu, Changrui Liao, Jiarong Lian, and Yiping Wang*, “Post-treatment techniques for enhancing mode-coupling in long period fiber gratings induced by CO2 laser,” Photonic Sensors, 5(4), 339-344, 2015. (中科院三区, IF=2.073)

Ø 会议论文

[1] Xizhen Xu, Jun He,* Xunzhou Xiao, Yiping Wang, “High-temperature-resistant vector vibration sensor based on a ring cavity laser and a multicore fiber Bragg grating,” European Workshop on Optical Fibre Sensors (EWOFS 2023), Mons, Belgium, 2023.

[2] Jun He, Jia He*, Xizhen Xu,* Xiaoyu Yin, Yiping Wang, “Single-mode helical sapphire fiber Bragg grating for high-temperature sensing,” European Workshop on Optical Fibre Sensors (EWOFS 2023), Mons, Belgium, 2023.

[3] Xizhen Xu, Jun He,* Jia He, Jiafeng Wu, He Li, Zhuoda Li, Bin Du, Changrui Liao, and Yiping Wang, “Ultra-high-temperature sensors based on sapphire fiber Bragg gratings created with femtosecond laser direct writing technique,” 2022 20th International Conference on Optical Communications and Networks, Shenzhen, 2022.

[4] Xizhen Xu, Jun He*, Jia He, Baijie Xu, Changrui Liao, and Yiping Wang, “High-temperature sensors based on sapphire fiber Bragg gratings fabricated by using femtosecond laser direct writing technique,” Asia Communications and Photonics Conference 2021 (LTO-2021), Shanghai, LTO300-49 V. 2, 2021.

[5] Xizhen Xu, Jun He, Changrui Liao, and Yiping Wang, “Ultrafast laser inscription of fiber Bragg gratings with low polarization dependent loss,” Asia Communications and Photonics Conference 2020 (ACP-2020), Beijing, M4A.113, 2020.

[6] Xizhen Xu, Jun He, Changrui Liao, “Sapphire fiber Bragg gratings with improved spectral properties for high-temperature measurements,” 2019 Photonics & Electromagnetics Research Symposium - Fall (PIERS - Fall), Dec 17-20, 2019. (EI收录口头报告)

[7] Xizhen Xu, Jun He, Changrui Liao, Ying Wang, Yiping Wang, “Highly sensitive bend measurements using a miniature fiber collimator-based Fabry-Perot Interferometer, Asia Communications and Photonics Conference (ACP) 2018, Hangzhou, Oct 26-29, 2018. (EI收录口头报告)

[8] Xizhen Xu, Jun He, Changrui Liao, Ying Wang, and Yiping Wang, “Highly sensitive bend sensor based on an integrated fiber collimator, 1st International Conference on Optics, Photonics and Lasers (OPAL') 2018, Barcelona, Spain May 9-11, 2018.(口头报告)

[9] 徐锡镇、王英、何俊、廖常锐、连加荣、王义平, 基于光纤气泡在线监测氧化锌纳米线生长, 2017年中国光纤传感学术会议暨产业化论坛, 北京, Oct. 14-16, 2017. (张贴报告)

[10] Xizhen Xu, Yingjie Liu ,Bing Sun, Changrui Liao, Shen Liu, Guolu Yin, Kaiming Yang, Yijian Huang, and Yiping Wang, “High-sensitivity bend sensor based on Mach-Zender interference using photonic crystal fiber,” The Optoelectronics Global Conference 2015 (OGC-2015), Shenzhen, PS-30_S6-b.01, 2015. (特邀报告)


五、发明专利

[1] 何俊、徐锡镇、王义平、侯茂祥,一种光纤弯曲传感器及光纤弯曲传感器的制备方法,中国发明专利,专利号:ZL201810498326.X申请日:2018.05.23,授权日:2024.05.03

[2] 王义平、徐锡镇、廖常锐,一种光纤生长氧化锌纳米线及其制备方法和装载模具,中国发明专利,专利号:ZL201510376577.7申请日:2015.06.30,授权日:2016.09.21

[3] 王义平、徐锡镇、王英、廖常锐,一种小型光纤器件湿度测试箱,中国发明专利,专利号:ZL201510813085.X,申请日:2015.11.19,授权日:2018.04.28

[4] 何俊、王义平、黄伟、徐锡镇,一种光纤压力传感器及其制作方法,中国发明专利,专利号:ZL201811562376.6,申请日:2018.12.20,授权日:2020.12.04

[5] 何俊、王义平、郭奎奎、徐锡镇,相移光纤布拉格光栅制备方法、装置和相移光纤布拉格光栅,中国发明专利,专利号:ZL201711147014.6,申请日:2017.11.17,授权日:2023.09.22

[6] 何俊、王义平、张凤婵、徐锡镇,基于自聚焦光纤的折射率传感器及其制备方法,中国发明专利,专利号:ZL201811036629.6,申请日:2018.09.06,授权日:2023.12.15

[7] 何俊、闫子恒、王义平、杜斌、徐锡镇、付彩玲,分布式光纤温度传感的自校准恒温装置及解调方法和系统中国发明专利,专利号:ZL202311814203.X,申请日:2023.12.26,授权日:2024.07.30



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