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刘伟伟  
南开大学 教授

经历

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个人简介

刘伟伟,南开大学教授,博士生导师,现代光学研究所所长,主要研究方向为超快光学与应用。兼任国务院学位委员会光学工程学科评议组成员、中国光学学会常务理事、天津市光学学会副理事长、天津市青联常委等。

主持国家重点研发计划、国家载人航天工程、中央军委装备发展部、国家自然科学基金等项目30多项。发表200多篇学术论文,引用7600多次,H因子47。第一完成人获天津市自然科学一等奖、天津市技术发明二等奖、天津市专利金奖、天津市专利优秀奖等。国际会议邀请报告50余次,任Optics Letters等国际期刊编委。

获全国最美科技工作者推荐人物、天津市有突出贡献专家、天津市五一劳动奖章、中国光学学会“王大珩光学奖-中青年科技人员光学奖”等荣誉。

指导学生多次获得中国“互联网+”大学生创新创业大赛全国铜奖(天津赛区金奖)、移动互联创新大赛全国一等奖、南开大学周恩来奖学金、天津市优秀博士论文、天津市研究生优秀党员标兵、天津市大学生创新特等奖、天津市发明与设计大赛一等奖等荣誉。


专利

1、Method for remote sensing of targets in a transparent medium using ultra-short intense lasersS.L. ChinJ-F DaigleW. LiuUnited States Patent US (专利号:7,787,119 B2(2010))
2、非晶硅PIN光电池及其制备方法 (专利号:201510670067)
3、检测消逝场与古斯汉欣位移关系的方法、装置及光学器件 (专利号:201610059996.2)
4、单光导天线的脉冲太赫兹时域光谱系统及探测方法 (专利号:201510287851.3)
5、 Methodapparatus and optical device for detecting relationship between evanescent field and goos-hanchen shift美国 (专利号:US Patent 10,352,855)
6、一种预应力梁灌浆密实度检测系统及检测方法 (专利号:201610692174.8)
7、一种基于宽光谱分析技术的多组分气体检测装置 (专利号:ZL 201010051236.X)
8、光丝阵列增强THz 辐射方法 (专利号:ZL201310321661. X)
9、一种全光纤透反射一体式太赫兹时域光谱系统 (专利号:201510020285.X)
10、基于光纤F-P可调谐滤波器的气体传感系统和传感方法 (专利号:201510154087.2)
11、基于单模光纤的太赫兹脉冲单次探测系统及探测方法 (专利号:201510673989.7)
12、悬浮泥沙浓度监测系统及监测方法 (专利号:201610744281)
13、基于荧光光谱的超高激光光强远程测量方法 (专利号:ZL201710545272.3)
14、基于光学反射定律对真空玻璃真空度的在线检测方法 (专利号:201710545281.2)
15、甲巯咪唑的检测方法 (专利号:201710705335.7)
16、一种超衍射分辨极限太赫兹光谱成像系统 (专利号:2017101385753)
17、一种基于金属探针的太赫兹超分辨成像装置及成像方法 (专利号: 201810520030.3)

科研项目 共17项

基于飞秒激光成丝的高时空分辨THz探针机制和调控方法研究
基于超快激光成丝中THz双折射效应的THz偏振调控机制研究
基于光丝激光雷达的大气污染多组分监测技术研究
基于激光成丝现象的生物气溶胶痕量快速预警关键技术
先进太赫兹科学与技术研究团队
基于THz 扫描成像技术的后张法预应力孔道压浆密实度无损检测技术研究
超快激光成丝现象中的THz 波空间强束缚效应研究
基于超快激光成丝现象的超分辨太赫兹波成像技术研究
光泵浦宽带可调THz辐射源
面向大气污染监测的超快激光成丝现象及控制研究
基于强场超快激光的精密测量与精密光谱学中的前沿科学问题探索
天宫一号有害气体检测装置
基于超快激光成丝过程的可调谐少数周期激光脉冲产生技术的研究
利用气体中的光学成丝现象产生可调谐少数周期激光脉冲的技术的研究
强超短脉冲激光科学
光子学与非线性光学产生太赫兹辐射源的基础研究
超短脉冲激光烧蚀推进新技术的基础研究

部分学术论文 共57篇

[1] Tingyuan Wang , Yuyan Song , Chuqian Liu , Xiaolei Wang , Lie Lin , Weiwei Liu , Nan Zhang *, Femtosecond laser ablation of metal targets: The physical origin of the power law size distribution of nanoparticles, Optics & Laser Technology, 134, 106651 (2021)
[2] Weiwei Liu, ZhiqiangYu, Dan Lu, Nan Zhang*, Multi-wavelength annular optical pulses generated by double interferent femtosecond Bessel laser beams in silica glass, Optics and Lasers in Engineering, 136, 106330 (2021)
[3] Zijie Dai, Manukumara Manjappa, Yunkun Yang, Thomas Cai Wei Tan, Bo Qiang, Song Han, Liang Jie Wong, Faxian Xiu,* Weiwei Liu,* and Ranjan Singh*, High Mobility 3D Dirac Semimetal (Cd3As2) for Ultrafast Photoactive Terahertz Photonics, Adv. Funct. Mater., 2011011 (2021)
[4] Weihao Wang, Xing Zhao*, Xuewei Zhao, Lipei Song, Weiwei Liu, Yaoyao Wang, On-machine measurement method for micro-structured surface by integral imaging with workpiece rotating technique, Opt. Eng. 60(5), 051210 (2021)
[5] Liuchang Xiao, Kainian Tong, Lipei Song, Lingjie Wang, Pengfei Wu, Weiwei Liu, and Xing Zhao*,
[6] Caiyun Li, Jiangyong He, Ruijing He, Yange Liu, Yang Yue, Weiwei Liu, Luhe Zhang, Longfei Zhu, Mengjie Zhou, Kaiyan Zhu, and Zhi Wang*, Analysis of real-time spectral interference using a deep neural network to reconstruct multi-soliton dynamics in mode-locked lasers, APL Photonics 5, 116101 (2020)
[7] Yanan Zhao, Yang Yuan, Haisheng Chen, Wenwen Chen, Xiaona Du, Cheng Gong, Lie Lin, Wei Luo*, Weiwei Liu, Yang Zhang*, In Situ Probing of Surface Acoustic Waves by Interfacing with Lanthanide Emitters, Adv. Optical Mater., 2001760 (2020).
[8] Bo Yan, Zhigang Wang, Xing Zhao, Lie Lin, Xiaolei Wang, Cheng Gong* & Weiwei Liu, Printing special surface components for THz 2D and 3D imaging. Sci Rep 10, 20867 (2020).
[9] Lu Sun, Fan Huang, Weiwei Liu, Lie Lin, Yin Hong, Xianglei Kong*, Chiral differentiation of l- and d-penicillamine by β-cyclodextrin: Investigated by IRMPD spectroscopy and theoretical simulations, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 241, 118653 (2020)
[10] Zhi Zhang, Zijie Dai, Yunfei Wang, Chunyue Chu, Qiang Su, Olga Kosareva, Nan Zhang*, Lie Lin & Weiwei Liu*, Fabricating THz spiral zone plate by high throughput femtosecond laser air filament direct writing, Scientific Reports 10, 13965 (2020)
[11] Zhi Zhang, Olga Kosareva, Nan Zhang*, Lie Lin & Weiwei Liu, Genetic algorithm for the location control of femtosecond laser filament, Scientific Reports 10, 12878 (2020)
[12] Jinpei Liu, Xianqing Tian, Chunyue Chu, Heliang Sui, Zhi Zhang, Dong Liang, Nan Zhang, Lie Lin and Weiwei Liu*, Effect of beam ellipticity on femtosecond laser multi-filamentation regulated by π-phase plate, Laser Phys. Lett. 17, 085402 (2020)
[13] Feng L, Wang X, Sun X, Wang S, Lin L, Kosareva O, Liu W*. Efficient Multifocal Structured Illumination Microscopy Utilizing a Spatial Light Modulator. Applied Sciences. 2020; 10(12):4396
[14]  Haisheng Chen, Zhengang Dong, Wenwen Chen, Lu Sun, Xiaona Du, Yanan Zhao, Ping Chen, Zhenping Wu*, Weiwei Liu, Yang Zhang*, Flexible and Rewritable Non‐Volatile Photomemory Based on Inorganic Lanthanide‐Doped Photochromic Thin Films, Adv. Optical Mater. 2020, 8, 1902125.
[15] Xiaolei Wang, Jiehui Zhao, Fang Bo, Guangke Jiang, Xiaoxue Hu, Zhuqing Zhu, and Weiwei Liu,
[16] Jiali Yao, Jiaonan Ma, Jiehui Zhao, Pengfei Qi, Mengdi Li, Lie Lin, Lu Sun, Xiaolei Wang, Weiwei Liu*, and Yan Wang*,
[17] Haisheng Chen, Zhengang Dong, Yanan Zhao, Sisi Li, Xiaona Du, Zhenping Wu*, Weiwei Liu, Yang Zhang*, In-situ tailoring upconversion processes from lanthanide ions doped ferroelectric films through piezoelectric strain, Journal of Luminescence, 219, 116914 (2020)
[18] Ting Yu, Xu Zuo, Weiwei Liu, Cheng Gong*, 0.1THz super-resolution imaging based on 3D printed confocal waveguides, Optics Communications, 459, 124896 (2020)
[19] Qiang Su, Lu Sun, Chunyue Chu, Zhi Zhang, Nan Zhang, Lie Lin, Zhinan Zeng*, Olga Kosareva, Weiwei Liu*, See Leang Chin, Effect of Molecular Orbital Angular Momentum on Spatial Distribution of Fluorescence during Femtosecond Laser Filamentation in Air, J. Phys. Chem. Lett., 11, 730-734 (2020) (cover story)
[20] Chunyue Chu, Daniil E. Shipilo, Dan Lu, Zhi Zhang, Sergey V. Chuchupal, Nikolay A. Panov, Olga G. Kosareva, and Weiwei Liu*,
[21] Sixing Xi, Nana Yu, Xiaolei Wang*, Xueguang Wang, Liying Lang, Huaying Wang, Weiwei Liu, Hongchen Zhai,, Optical encryption scheme for multiple-image based on spatially angular multiplexing and computer generated hologram, Optics and Lasers in Engineering 127, 105953 (2019)
[22] Q. Su, W. Liu, D. Lu, P. Qi, O. Kosareva and N. Zhang*,
[23] Qiang Su, Qiang Xu, Nan Zhang, Yang Zhang, and Weiwei Liu*,
[24] Pengfei Qi, Lu Sun, Jiaonan Ma, Jiali Yao, Lie Lin*, Lin Zhang, Yan Wang*, Weiwei Liu, Ex vivo quantitative analysis of human corneal stroma dehydration by near‐infrared absorption spectroscopy, Journal of Biophotonics, 12 (10), e201800472 (2019)
[25] Rui Huang, Qinghe Zhang*, Pengfei Qi, Weiwei Liu, Concentration Measurement of Uniform Particles Based on Backscatter Sensing of Optical Fibers, Water 11 (9), 1955 (2019)
[26] Liang Feng, Langfeng Zhou, Xinlei Sun, Qiang Xu, Ping Chen, Xiaolei Wang* & Weiwei Liu, A method for the reconstruction of multifocal structured illumination microscopy data with high efficiency, Scientific reports 9, 13378 (2019)
[27] Nikolay A. Panov, Daniil E. Shipilo, Alexander M. Saletsky, Weiwei Liu, Pavel G. Polynkin, and Olga G. Kosareva, Nonlinear transparency window for ultraintense femtosecond laser pulses in the atmosphere, Phys. Rev. A 100, 023832 (2019)
[28] Zijie Dai, Qiang Su, Dan Lu, Lu Sun*, Weiwei Liu, A combined experimental and theoretical study on the terahertz vibrations of water vapors, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 214, 277-284 (2019)
[29] Dan Lu, Hui Gao*, Jiayu Zhao, Bo Yang, Weiwei Liu, Numerical simulation on terahertz wave propagation in plasma channels, Optik, 182, 42-49 (2019)
[30] Dan Lu, Weiwei Liu, Qiang Su, Pengfei Qi, Zhiqiang Yu, Nan Zhang*, Generation of Multi-Wavelength Light Pulses by Femtosecond Bessel Laser Beam in Silica Glass, IEEE Photonics Technology Letters, 31, 837 - 840 (2019)
[31] Zijie Dai, Qiang Su, Yunfei Wang, Pengfei Qi, Xiaolei Wang* and Weiwei Liu, Fast fabrication of THz devices by femtosecond laser direct writing with a galvanometer scanner, Laser Physics 29 (6), 065301 (2019)
[32] Chao Hu, Lie Lin, Ping Chen, Cheng Gong* and Weiwei Liu, Skew symmetric structure for ultra-broadband electromagnetic absorbing, Journal of Physics Communications, 3, 045003 (2019)
[33] Langfeng Zhou, Meng Qiao, Lei Zhang, Lu Sun*, Yang Zhang, Weiwei Liu, Green and efficient synthesis of carbon quantum dots and their luminescent properties, Journal of Luminescence 206, 158–163 (2019)2
[34] Shuai Li, Zijie Dai, Zhiguo Wang, Pengfei Qi, Qiang Su, Xiang Gao, Cheng Gong*, Weiwei Liu, A 0.1 THz low-loss 3D printed hollow waveguide, Optik, 176, 611–616 (2019)1
[35] Pengfei Qi, Qiang Su, Dan Lu, Lie Lin, Nan Zhang, Weiwei Liu*, Optical nonlinearities of alcoholic liquids under high-repetition-rate femtosecond lasers by single beam time-resolved eclipsed Z-scan, Optics & Laser Technology, 109, 543-649 (2019)
[36] Dai Zijie, Yang Jing, Gong Cheng, Zhang Nan, Sun Lu*, Liu Weiwei, Optically controlled graphene based terahertz modulator, Infrared and Laser Engineering, 48, 0125001 (2019)
[37] Wenming Su, Wenrui Guo, Zhiguo Wang, Ping Chen, Cheng Gong*, Lie Lin and Weiwei Liu, Printing flexible terahertz metasurface of optical transparency Journal of Physics D, 52, 095107 (2019)
[1] 王森德, 姚嘉丽, 胡俊波, 刘晓庆, 林列*, 刘永基, 刘伟伟,角膜含水量光学测量方法研究综述,激光与光电子学进展,57,170001 (2020) (封面文章)
[2] 刘伟伟*,薛嘉云,苏强,陈瑞良. 超快激光成丝现象研究综述[J]. 中国激光, 2020, 47(5): 0500003
[3] 高翔,刘晓庆,戴子杰,刘伟伟*.连续太赫兹波成像在混凝土无损检测中的应用[J].天津建设科技,2020,30(02):56-59
[4] 孙鑫蕾,刘刚,王晶,董长哲,赵星,肖流长,刘明铭,赵润翰,张楠*,谢茂强,林列,刘永基,刘伟伟.基于机器学习的大面积拼接镜倾斜误差探测[J].光电子·激光,2020,31(04):380-387
[5] 梁栋,刘刚,陈道远,龚诚*,林列,刘伟伟.飞秒激光超声时域分析用于无损检测研究[J].光电子·激光,2020,31(02):142-147
[6] 王晓雷, 赵洁惠, 李淼, 姜光科, 胡晓雪, 张楠, 翟宏琛, 刘伟伟*. 基于人工表面等离激元探针实现太赫兹波的紧聚焦和场增强. 物理学报, 2020, 69(5): 054201
[7] 李小凯,宋丽培*,刘伟伟, 钽铌酸钾晶体的电控偏转色散特性研究[J].光学学报, 2020, 40(08):0826001.
[8] 黄凡,张旭坤,孙陆*,刘伟伟. 基于遗传算法和模拟退火算法的振动光谱成分分析算法[J].激光与光电子学进展,2020,57(09):093001
[9] [29] 刘晓庆,姚嘉丽,黄凡,刘永基,林列,孙陆*,刘伟伟. 基于太赫兹时域光谱的青霉素类药物检测研究[J].光学学报,2020,40(06):0630001
[10] 黄睿, 张庆河*, 邢恩博, 齐鹏飞,刘伟伟. 基于光纤传感的多通道泥沙浓度测量研究[J]. 水力发电学报, 2019, 38(12): 19-27.
[11] [37] 高翔,刘晓庆,戴子杰,李帅,刘伟伟.基于波导结构的集成式太赫兹共焦成像系统[J].红外与激光工程,2019,48(S2):104-108
[12] 鲁丹,苏强,齐鹏飞,徐强,张楠,林列,刘伟伟*,基于光丝阵列的太赫兹辐射增强方法,中国激光,46卷,6期,614021(2019)
[13] 徐强,苏强,鲁丹,张楠,张杨,刘伟伟*,基于激光成丝的太赫兹时域光谱系统研究综述,中国激光,46卷,6期,614010(2019)
[14] 王婷媛, 刘伟伟,张楠*,余志强,付璐,刘洪双,周朗峰,非柱对称飞秒矢量光在钨表面制备弧形周期条纹结构,中国激光,46卷,5期,508023 (2019)
[15] 陈平,王云飞,戴子杰,龚诚,张楠,刘伟伟*,基于飞秒激光成丝的大幅面激光打标方法,中国激光,46卷,5期,508019 (2019)
[16] 付璐,王云飞,陈平*,刘伟伟,林列,双月形圆周阵列超表面生成涡旋光束的研究,光电子•激光,30,326(2019)
[17] 李帅,戴子杰,高翔,占涛,赵得龙,龚诚*,刘伟伟,低损耗太赫兹波导及其成像应用,红外与毫米波学报,38,68(2019)
[18] 胡超,王岩,陈平*,史卓群,刘伟伟,林列,用于检测血清中毒品的频率选择表面的设计,光电子•激光,30,154(2019)
[19] 王岩,胡超,陈平*,杨嘉文,刘伟伟,林列,基于离焦深度法的自动对焦光路设计,光电子•激光,30,29(2019)
[20] 王岩,付璐,陈平*,刘希芸,刘伟伟,林列.用于光谱仪消像差的施密特校正板设计[J].光学学报,2019,39(05):206-211

主要成就、奖项、荣誉

2020,天津市技术发明二等奖,微尺度光学传感技术,第1完成人
2019,天津市专利奖金奖,一种基于宽光谱分析技术的多组分气体检测装置,第1完成人
2018,天津市专利奖优秀奖,一种全光纤透反射一体式太赫兹时域光谱系统,第1完成人
2017,天津市自然科学奖一等奖,超快激光与物质相互作用机制、调控及应用研究,第1完成人
天津市最美科技工作者(及全国最美科技工作者推荐人物)(2020)
天津市科普大使(2020),(7)中国产学研合作创新奖(2019),(8)天津市优秀科技工作者(2019),(9)天津市创新人才推进计划中青年科技创新领军人才(2019),(10)天津市有突出贡献专家(2018),(11)天津市五一劳动奖章(2017),(12)天津市人才发展特殊支持计划-先进太赫兹科学与技术团队(2017),(13)全国最美青年科技工作者 (2015)
第一届全国太赫兹科学技术学术年会大会优秀青年学者奖(2015)
中国光学学会“王大珩光学奖-中青年科技人员光学奖”(2011)
中国仪器仪表学会“金国藩青年学子奖学金”(2011)

相关专家

研究方向:气溶胶动力学,进化博弈,环境经济学
研究领域:机械制造及其自动化 1、数字化制造(CAD/CAM/CAE/NC一体化技术,与国外大学教授有紧密的学术交流); 2、工程机械再制造工程(曲面数字化再制造技术,无损拆解技术及装备,再制造信息化); 3、智能办公家居设备研究(智能升降桌研发,人体工学支架研发); 4、机电液复合软启动传动与控制技术;
研究领域:机械电子工程,机械设计及理论, 设备状态监测与故障诊断;动态信号分析与处理;汽车振动与噪声控制(NVH);声子晶体/声学超材料性质及应用研究;声学超材料力学性能研究。
研究领域:机械电子工程 , 机电控制、汽车电子、数控技术、图像视觉检测、高等教育管理
研究领域:声子晶体、智能超材料、非线性超材料的理论及减振降噪应用; 声学SLAM算法研究及应用; 机器视觉、SLAM算法的工程应用; 智能装备及机器人的控制。