王咏梅
主要研究方向:光纤传感技术、微纳光子学、非线性光学
邮箱:wangyongmei65@163.com
办公地址:物理科学与技术学院实验楼605办公室
王咏梅,女,博士,硕导。主要从事光纤传感技术、微纳光子学、非线性光学的基础研究工作。近年来在《Optics Letters》、《Applied Physical Letters》等SCI收录的权威期刊上发表学术论文20余篇。主持完成广西自然科学基金项目1项。
2017年10月—至今 广西师范大学 讲师 硕士生导师
2011年9月—2013年7月 东北大学 物理学专业 理学硕士
2013年9月—2017年9月 南京大学 光学工程专业 工学博士
主讲本科生课程:《激光原理与技术》、《C语言程序设计》
1.2024年指导学生获得全国光电设计大赛国赛银奖。
2.2025年指导学生张秋楠、廖祥羽等参与2025年中国国际大学生创新大赛区赛获奖。
[1] Qiunan Zhang, Can’er Cheng, Chuanyang Huang, Xiangyu Liao, Yongmei Wang*(通讯作者), Jian Tang *, Junhui Hu , Weijia Shao , and Jun Liu,Highly Sensitive PCF Sensor Based on Au-TiO2 for Cancer Cell Detection,IEEE SENSORS JOURNAL, 2025,25(6), 9664.
[2] Qiunan Zhang, Xiangyu Liao, Yongmei Wang*(通讯作者), Caner Cheng, Chuanyang Huang, Yangtao Liu, Weijia Shao, Qingjia Zhou, Jian Tang, Junhui Hu and Jun Liu,Highly sensitive PCF sensor based on SPR effect for dual-parameter detection of cancer cells and temperature, Physica Scripta,2025, 100, 085505.
[3] Laipeng Shao, Chuanyang Huang, Zhenbo Yan, Yongmei Wang*(通讯作者), Hongdong Chen, Caner Cheng, Songwei Li, Qiunan Zhang, Xiangyu Liao, Jian Tang, Hanglin Lu, Junhui Hu, And Kuikui Guo, Fiber Vector Torsion Sensor with Low Crosstalk for Temperature and Strain Based on Mach-Zehnder Interference,IEEE SENSORS JOURNAL, 2025,DOI 10.1109/JSEN.2025.3593061.
[4] Qiunan Zhang, Zhao Zhang , Can’er Cheng , Chuanyang Huang , Xiangyu Liao , Jian Tang , Junhui Hu , Yongmei Wang *(通讯作者), Weijia Shao * , Research on D-shape PCF temperature sensor with simple structure and high sensitivity, optik, 2025, 323,172228.
[5] Caner Cheng, Chuanyang Huang, Qiunan Zhang, Xiangyu Liao, Jun Yang ,Weijia Shao, Jian Tang ,Laipeng Shao, Junhui Hu and Yongmei Wang*(通讯作者). Physica Scripta,2025, 100, 015509.
[6] Chuanyang Huang, Hongdong Chen, Caner Cheng, Songwei Li, Qiunan Zhang, Yongmei Wang*(通讯作者), Zhao Zhang, Laipeng Shao*, Jian Tang*, Wweiju Tao, Kuikui Guo,Junhui Hu, Hanglin Lu. Optics Express, 2024, 32(20), 34431.
[7] Xiaoyan Yang, Yongmei Wang(共同一作), Yaoyao Li ,Weihao Cui, Junhui Hu, Qingjia Zhou,Weijia Shao*. High-Performance Planar Broadband Hot-Electron Photodetection through Platinum–Dielectric Triple Junctions. Nanomaterials, 14, 1552, 2024.
[8] Zhao Zhang , Caner Cheng , Chuanyang Huang , Zhangwei Tong , Jian Tang , Laipeng Shao , Junhui Hu , Weijia Shao *, Yongmei Wang*(通讯作者),Wide refractive index detection range sensors based on D-shape photonic crystal fiber with a nanoscale gold wire, Optik, 2023, 292, 171409.
[9] 程灿儿,黄川洋,张秋楠,张钊,杨军,童章伟,邵伟佳,唐剑,邵来鹏,胡君辉,王咏梅*(通讯作者).基于 SPR 效应的双凹槽单通道光子晶体光纤高折射率传感器.广西师范大学学报(自然科学版),2024.
[10] 黄川洋,程灿儿,李松威,陈鸿东,张秋楠,张 钊,邵来鹏*,唐 剑,王咏梅*(通讯作者),郭奎奎,陆航林, 胡君辉. 带涂覆层的长周期光纤光栅温度传感特性研究. 广西师范大学学报(自然科学版),2024.
[11] Yongmei Wang, Dunzhao Wei, Yunzhi Zhu, Xiaoyang Huang, Xinyuan Fang,Weihao Zhong, Qianjin Wang,Yong Zhang*, and Min Xiao,Conversion of the optical orbital angular momentum in a plasmon-assisted second-harmonic generation,Applied Physics Letters, 2016,109(8), 081105-3.
[12] Yongmei Wang, Xinyuan Fang, Zeyu Kuang, Huijun Wang, Dunzhao Wei, Yuzhang Liang, Qianjin Wang, Ting Xu, Yong Zhang*, and Min Xiao, On-chip Generation of Broadband High-order Laguerre-Gaussian Modes in a Metasurface, Optics Letters, 2017, 42(13), 2463-2466.
[13] Dunzhao Wei, Yongmei Wang, Dongmei Liu, Yunzhi Zhu, Weihao Zhong, Xinyuan Fang, Yong Zhang*, Min Xiao*, Simple and Nondestructive On-Chip Detection of Optical Orbital Angular Momentum through a Single Plasmonic Nanohole, ACS Photonics, 2017, 4(4): 996-1002.
[14] Xinyuan Fang , Huijun Wang, Haocheng Yang, Zhilin Ye,Yongmei Wang, Yong Zhang* ,Xiaopeng Hu* ,Shining Zhu, and Min Xiao, Multichannel nonlinear hologaphy in a two-dimensional nonlinear photonic crystal, Physical Review A, 2020, 102, 043506.
[15] Dunzhao Wei, Yang Wu, Yongmei Wang, Dongmei Liu, Yunzhi Zhu, Dan Wei, Yong Zhang*, Min Xiao, Survival of the orbital angular momentum of light through an extraordinary optical transmission process in the paraxial approximation, Optics Express, 2016, 24(11): 12007-12012.
1.广西自然科学基金项目:基于金属超表面的高纯度、短波长拉盖尔- 高斯模式光束的输出研究(2020GXNSFBA159008),2020/7-2023/6,8万元,主持。
2.中央引导地方科技发展项目:特种光传输放大设备技术创新体系构建与示范(桂科ZY23055007),2023/1-2026/12,200万元,参与。