个人简介
傅晓建 职称:副教授
办公室:东南大学四牌楼校区李文正楼南602室
学习经历:
2005/9 – 2009/6,浙江大学,本科;
2009/9 – 2014/7,清华大学,博士。
工作经历:
2014/6 – 2017/5,东南大学,信息学院,博士后;
2016/3 – 2017/3,南洋理工大学(新加坡),电气与电子工程学院,博士后研究员;
2017/5 – 至今,东南大学,信息学院,上岗副研究员、副教授,硕士生导师、博士生导师;
2018/5 – 2019/5,科技部高技术研究发展中心,工作借调。
教授课程:
特异电磁材料研究新进展[Seminar]--本科生
电子信息类专业学习概论(新生研讨课)--本科生
获奖情况:
2017年度获得首开课(特异电磁材料研究新进展[Seminar])校级优秀;
入选2017年度中国博士后科学基金资助者选介。
科研项目:
项目名称 项目类别 项目时间 工作类别 项目金额
太赫兹超表面调控电磁波波前研究 中央高校基本科研业务费 2020.01-2020.12 基础研究 6万元
太赫兹波束扫描天线(所属项目:太赫兹无线通信技术与系统) 国家重点研发计划项目子课题 2019.07-2023.06 基础研究 184万元
XXXX 国家级技装项目 2019.06-2020.12 基础研究 130万元
XXXX 国家级技装项目 2017.07-2017.12 基础研究 50万元
太赫兹人工表面等离激元无源器件 国家自然科学基金青年科学基金 2016.01-2018.12 基础研究 24.9万元
多功能可调谐局域表面等离激元器件 中国博士后科学基金特别资助 2016.03-2017.05 基础研究 15万元
基于磁耦合机制的可调太赫兹超材料 中国博士后科学基金面上项目 2014.07-2017.05 基础研究 8万元
专利:
专利号 专利名称 专利类型
申请号: 201510150073.3 一种实现空间波与太赫兹人工表面等离激元波转换的装置 国家发明专利授权
申请号: 201610272889.8 一种光控可编程太赫兹1-比特人工电磁表面及调控方法 国家发明专利申请
研究领域
1、新型人工电磁材料;
2、太赫兹超材料与超表面;
3、太赫兹功能材料与新型器件。
近期论文
查看导师新发文章
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[1]Xiaojian Fu, Fei Yang, Chenxi Liu, Xiaojun Wu, Tie Jun Cui. Terahertz beam steering technologies: from phased arrays to field-programmable metasurfaces. Advanced Optical Materials, 2020, 8: 1900628.
[2]傅晓建, 石磊, 崔铁军. 太赫兹超材料及其成像应用研究进展. 材料工程, 2020, 48: 12-22.
[3]Xiaojian Fu, Tie Jun Cui. Recent progress on metamaterials: from effective medium model to real-time information processing system. Progress in Quantum Electronics, 2019, 67: 100223.
[4]Xiaojian Fu, Xinxi Zeng, Tie Jun Cui, Chuwen Lan, Yunsheng Guo, Hao Chi Zhang, Qian Zhang. Mode jumping of split-ring resonator metamaterials controlled by high-permittivity BST and incident electric fields. Scientific Reports, 2016, 6: 31274.
[5]Xiaojian Fu, Xinxi Zeng, Ji Zhou, Tie Jun Cui. Significantly altered macroscopic magnetic properties and terahertz magnetic resonance of gadolinium orthoferrite by titanium addition. IEEE Transactions on Magnetics, 2016, 52: 2800206.
[6]Xiaojian Fu, Xinxi Zeng, Hao Chi Zhang, Tie Jun Cui. Terahertz magnetic response and high dielectric constant in Ti:SmFeO3. Materials Letters, 2016, 166: 235-238.
[7]Xiaojian Fu, Xinxi Zeng, Dongyang Wang, Hao Chi Zhang, Jiaguang Han, Tie Jun Cui. Ultralow temperature terahertz magnetic thermodynamics of perovskite-like SmFeO3 ceramic. Scientific Reports, 2015, 5: 14777.
[8]Xiaojian Fu, Xiaoming Liu, Ji Zhou. Terahertz spectroscopic observation of spin reorientation induced antiferromagnetic mode softening in DyFeO3 ceramics. Materials Letters, 2014, 132: 190-192.
[9]Xiaojian Fu, Youting Song, Changqing Sun, Ji Zhou. Anisotropic terahertz dielectric responses of sodium nitrate crystal. Physical Chemistry Chemical Physics, 2014, 16: 6963-6967.
[10]Xiaojian Fu, Hongya Wu, Xiaoqing Xi, Ji Zhou. Molecular rotation-vibration dynamics of low-symmetric hydrate crystal in the terahertz region. The Journal of Physical Chemistry A, 2014, 118: 333-338.
[11]Xiaojian Fu, Xiaoqing Xi, Ke Bi, Ji Zhou. Temperature-dependent terahertz magnetic dipole radiation from antiferromagnetic GdFeO3 ceramics. Applied Physics Letters, 2013, 103: 211108.
[12]Lei Bao, Rui Yuan Wu, Xiaojian Fu, Qian Ma, Guo Dong Bai, Jing Mu, Ruizhe Jiang, Tie Jun Cui. Multi-beam forming and controls by metasurface with phase and amplitude modulations. IEEE Transactions on Antennas and Propagation, 2019, 67: 6680-6685.
[13]Hao Tian Wu, Dan Wang, Xiaojian Fu, Shuo Liu, Lei Zhang, Guo Dong Bai, Cheng Zhang, Wei Xiang Jiang, Hao Lin Jiang, Rui Yuan Wu, Jun Wei Wu, Tie Jun Cui. Space-frequency-domain gradient metamaterials.Advanced Optical Materials, 2018, 6: 1801086.
[14]刘峻峰, 刘硕, 傅晓建, 崔铁军. 太赫兹信息超材料与超表面. 雷达学报, 2018, 7: 46-55.
[15]Hao Chi Zhang, Yifeng Fan, Jian Guo, Xiaojian Fu, Tie Jun Cui. Second-harmonic generation of spoof surface plasmon polaritons using nonlinear plasmonic metamaterials. ACS Photonics, 2016, 3: 139-146.
[16]Chuwen Lan, Ke Bi, Xiaojian Fu, Bo Li, Ji Zhou. Bifunctional metamaterials with simultaneous and independent manipulation of thermal and electric fields. Optics Express, 2016, 24: 23072-23080.
[17]Xinxi Zeng, Xiaojian Fu, Xiaoqing Xi, Dongyang Wang, Ji Zhou, Bo Li. Thermodynamics of spin reorientations in TmFeO3 ceramics observed with terahertz time domain spectroscopy. Materials Letters, 2016, 164: 64-67.
[18]Xinxi Zeng, Xiaojian Fu, Dongyang Wang, Xiaoqing Xi, Ji Zhou, Bo Li. Terahertz time domain spectroscopic investigation of spin reorientation transitions in HoFeO3. Optics Express, 2015, 23: 31956-31963.