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导师简介
导师简介

徐弼军

2018/03/29 16:52:59 次浏览 分类:导师简介

 

   

   

   

   

徐弼军,197910月出生,博士,教授,硕士生导师,资产与实验管理处处长,浙江省物理学会支部委员、理事,获校创新创业导师、校青年骨干教师、校科技竞赛优秀指导教师、校优秀科研成果奖、校“三育人”先进个人等。2002年,获浙江大学物理学学士学位,2008年获得浙江大学光学硕士学位。2017年获得同济大学物理学博士学位。2002年开始在浙江科技学院工作。

主要从事主要研究方向:微纳光学材料、基于超表面材料的光学特性研究等方面。参与国家基金面上项目2项,主持省基金和公益项目3项、主持省部级教改项目2项、省级虚拟仿真实验项目2项,主编省重点建设教程2部,并获省高校“十二五”优秀教材,累计已发表SCI/EI收录论文40多篇;已授权国家发明专利15项,获浙江省科技成果鉴定项目2项。担任《Opt. Lett》、《Opt. Mater. Express》、《Opt. Express》《Nanotechnology》等知名期刊的审稿人。指导学生获得“国创项目”3项、“新苗项目”6项。指导学生获国家奖学金4人次、校卓越学子3人次。

办公室:A4-212; 办公电话:85070727; E-mailxubijun@zust.edu.cn

研究兴趣:

超材料(Metamaterials, 超表面(Metasurfaces),

可调石墨烯等离激元,光学天线设计,光学深度学习等

招生信息

十分欢迎物理学、光学工程、材料物理与化学、电子信息、应用统计专业,并对本课题组研究方向有兴趣的同学联系报考。

部分代表论文:

  1. Zhichao. Sun, Bijun. Xu*, Jin. Fan, Gongxue. Zhou and Lu. Lin, "Machine Learning Approach for On-Demand Rapid Constructing Metasurface," in IEEE Journal of Selected Topics in Quantum Electronics, vol. 28, no. 4, pp. 1-9, July-Aug. 2022, Art no. 4700209, doi: 10.1109/JSTQE.2021.3083565.https://ieeexplore.ieee.org/document/9440823

  2. Xigogang Wang*, Wenqi Wang, Haoyu Wei, Bijun Xu, and Chaoqing Dai, "Holographic and speckle encryption using deep learning," Opt. Lett. 46, 5794-5797 (2021) https://doi.org/10.1364/OL.443398

  3. Sun, Zhitong, Bijun Xu*, Bairui Wu, Xiaogang Wang, and Hao Ying. "High Efficiency Focusing and Vortex Generator Based on Polarization-Insensitive Gallium Nitride Metasurface" Nanomaterials. 2021; 11(10):2638. https://doi.org/10.3390/nano11102638

  4. Wenqi Wang, Xiaogang Wang*, Bijun Xu, Junlang Chen, Optical image encryption and authentication using phase-only computer-generated hologram, Optics and Lasers in Engineering, Volume 146, 2021,106722, ISSN 0143-8166, https://doi.org/10.1016/j.optlaseng.2021.106722.

  5. Bairui Wu,Bijun Xu*, Zuzhang Li, Pan Cheng, Xiaoju Xue, Zhitong Sun, Jiaming Wang, Yizheng Wang, Yanan Zhi, Lu Lin, Xiaogang Wang, and Ying Hao. Metalens and vortex generator based on a planar optics metasurface. Opt. Mater.Express.2021,11(5),1383-1389. https://doi.org/10.1364/OME.423449

  6. Bairui WuBijun Xu*Xiaogang Wang,  Hao Ying.Generation of a polarization insensitive Airy beam using an all-dielectric metasurface. Opt. Mater. Express. 2021,11(3):842-847.https://doi.org/10.1364/OME.418910

  7. Zhendong Wu, Bijun Xu*; Mengyao Yan, Bairui Wu, Pan Cheng and Zhichao Sun.  Tunable terahertz perfect absorber with graphene-based double split-ring structure.Opt. Mater. Express. 2021,11(1):73-79.•https://doi.org/10.1364/OME.410875

  8. Sun Zhichao, Mengyao Yan, Xu Bijun*. Formation of orbital angular momentum and focused beams based on chiral double-helical metamaterials. Optical Materials 2020,107,109962. DOI: 10.1016/j.optmat.2020.109962

  9. Sun Zhichao, Mengyao Yan, Xu Bijun*. Generation of Orbital Angular Momentum And Focused Beams With Tri-layer Medium MetamaterialChin. Phys. B2020, 29(10) 104101https://doi.org/10.1088/1674-1056/abab79

  10. Wu, Zhendong; Xu, Bijun*; Yan, Mengyao.  Broadband Microwave Absorber with a Double-Split Ring. Plasmonics 2020, 01209. DOI: 10.1007/s11468-020-01209-4

  11. Mengyao Yan, Zhichao Sun, Bairui Wu, Pan Cheng, Bijun Xu*. Reflective Focusing Based on Few-Layer Gradient Metasurface Element Array. Front. Phys. 2020,8:46. DOI:10.3389/fphy.2020.00046

  12. Mengyao Yan, Bijun Xu*, Zhichao Sun, Zhendong Wu, Bairui Wu, Terahertz Perfect Absorber Based on Asymmetric Open-Loop Cross-Dipole Structure. Chin.Phys. Lett. 2020, 37 (6): 067801. DOI: 10.1088/0256-307X/37/6/067801

  13. Sun Zhichao, Yan Mengyao, Eric Mupona Tungamirai, Xu Bijun*. Control Electromagnetic Waves Based on Multi-Layered Transparent Metasurface. Front. Phys. 2019,7:181. DOI: 10.3389/fphy.2019.00181

  14. Xin Tong, Bijun Xu*, Mengyao Yan, Zhichao Sun, Jie Zhou, Kehan Tian, Tungamirai Eric Mupona, Effect of polarizer on optical efficiency and inhomogeneity of diffractive optical elements, Optik. 2019, 192: 162981. https://doi.org/10.1016/j.ijleo.2019.162981

  15. Bijun Xu*, Chao Wu, Zeyong Wei, Yuancheng Fan, Hongqiang Li. Near-diffraction-limited focusing with gradient high-impedance metasurface. Opt. Mater. Express. 2017,4:1141-1146.https://doi.org/10.1364/OME.7.001141

 


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