丁旭旻
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个人简历
丁旭旻,博士,男,1988年生。哈尔滨工业大学仪器学院学院,现代显微仪器研究所主要从事基于微纳结构的光/电磁信息调制理论、器件设计及其应用方面的研究,以第一/(共同)通讯作者在Nature Communications, Advanced Materials等杂志共发表SCI检索论文40余篇,论文被引用1600余次(Google Scholar)。承担两项国家重大科技基础设施建设项目相关课题。主持国家自然科学基金青年基金,装备预研领域基金,中国博士后科学基金特别资助、一等资助,黑龙江省博士后特别资助、一等资助,航空重点基金合作项目等课题。2018年获黑龙江省科学技术奖(自然科学类)二等奖,获得哈尔滨工业大学第二十批优秀博士论文。2017年入选“哈尔滨工业大学青年拔尖人才计划”。工作经历2020.09 至今 哈工大 仪器科学与工程学院 副教授,博士生导师2018.05~2020.08 哈工大 电子与信息工程学院 副教授,硕士生导师2018.01~2018.04 哈工大 电子与信息工程学院 副教授2016.03~2017.12 哈工大 电子与信息工程学院 讲师教育经历2012.09~2015.12 哈尔滨工业大学 电子科学与技术 博士研究生其中:2014.09~2015.09 新加坡国立大学 ECE 联合配养博士(合作导师:Prof. Chengwei Qiu)2010.09~2012.07 哈尔滨工业大学 电磁场与微波技术 硕士研究生2006.09~2010.07 哈尔滨工业大学 通信工程 本科获奖成果2018年 获 黑龙江省科学技术奖(自然科学奖),二等奖,排名第三2018年 获 哈尔滨工业大学第二十批优秀博士论文2018年 获 黑龙江省高校科学技术奖,一等奖,排名第三2017年 入选“哈尔滨工业大学2017年度拔尖人才计划”团队成员团队负责人:刘俭 教授 (http://homepage.hit.edu.cn/liujian)团队成员:多名中青年教师,博士后,博士、硕士研究生。博士研究生:王卓超,16级博士研究生,已有论文发表于PhotoniX、Adv. Opt. Mater.、Phys. Rev. Applied、IEEE Trans.等杂志。管春生,18级博士研究生,已有论文发表于Nanophotonics、Optics Express、J. Phys. D: Appl. Phys.、IEEE Trans.等杂志 。尚官玉,19级博士研究生。王 岳,20级博士研究生。硕士研究生:王 岳,18级硕士研究生,已直博,已有论文发表于Optics Letters等杂志。吴月晨,19级硕士研究生。吴天昊,19级硕士研究生。恭喜 博士研究生 王卓超 同学 获得 2018年 国家奖学金!恭喜 硕士研究生 王 岳 同学 获得 2019年 国家奖学金!招生信息每年招收2名 硕士研究生,欢迎相关专业学生联系!每年招收1-2名博士研究生,科研经费充足,欢迎光学、仪器科学、电磁场与微波技术、物理等相关专业同学联系申请!实验室条件优越,欢迎各位同学加入!承担科研项目承担两项 国家重大科技基础设施建设项目 子课题作为项目负责人,主持以下项目:XXX系统,军品横向课题,2020.9-2021.12,主持,67.5万元S波段共形天线阵,军品横向课题,2020.09-2020.12,主持,28万元。可重构电磁防护材料,装备预研领域基金一般项目,2018.06-2020.06,主持,50万。基于超表面的方向图可重构全息阻抗调制天线机理与应用研究,国家自然基金青年项目,2018.01-2020.12,主持,25万。基于超表面的高性能微波器件研究,哈工大青年拔尖人才计划(副教授)科研启动经费,2018.01-2020.12,主持,20万。基于可调惠更斯表面的方向图可重构天线研究,中国博士后科学基金第11批特别资助,2018.09-2020.08,主持。人工电磁表面数字化编码调控技术及其应用研究,中国博士后科学基金面上一等资助,2016.11-2018.11,主持。基于可编程超表面的微波毫米波成像技术,黑龙江省博士后特别资助,2020.01-2021.12,主持。基于人工电磁表面可重构全息阻抗调制无线通信天线机理与应用研究,黑龙江省博士后面上一等资助,2017.01-2018.12,主持。高透波超材料结构技术研究,航空重点基金项目,2016.06-2017.05,主持。数控可调人工电磁表面机理及其应用研究,毫米波国家重点实验室开放课题,2017.01-2018.12,主持。惠更斯超表面在数字全息成像中的应用,毫米波国家重点实验室开放课题,2020.01-2021.12,主持。超表面方向图可重构天线设计,航天创新基金,2018.01-2018.12,主持。高效惠更斯超表面研究,哈工大科研创新基金特别资助,2019.01-2020.12,主持。专利[1] 基于广义折射定律的宽带电磁波异常折射透镜,ZL201310726238.8,2015,排名:2(导师第一) [2] 基于相位不连续表面的超薄电磁波汇聚、发散透镜的设计方法,ZL201310175741.9,2015,2(导师第一) [3] 基于广义折射定律的电磁波调控透镜加工参数的获得方法,ZL201310150021.7,2015,2(导师第一) [4] 基于超表面产生携带轨道角动量的贝塞尔波束的透镜及方法,201610362742.8,2016受理,排名:2(指导学生第一) [5] 基于超表面产生具有汇聚效果的涡旋波束的透镜及方法,201610362744.7,2016受理,排名:2(指导学生第一) [6] 基于反射型超表面产生涡旋波束的透镜及方法,201610369753.9,2016受理,排名:3 [7]基于X和Ka波段双频带、宽通带的频率选择表面,201711116982.0,2017受理,排名:1 [8]基于C型夹层雷达罩壁结构的X波段小型化高透波FSS,201711130709.3,2017受理,排名:1研究领域
"1. 超构透镜对光场的高效调控2. 多功能超构透镜的构造和应用3. 基于超构透镜的紧凑型全光运算系统4.毫米尺度量级物体的光致旋转操控"近期论文
202142. G Shang, H Li, Z Wang, K Zhang, SN Burokur, J Liu, Q Wu, X Ding, X Ding*, Coding metasurface holography with polarization-multiplexed functionality, Journal of Applied Physics 129 (3), 035304, 2021https://doi.org/10.1063/5.0036027202041. Yueyi Yuan, Kuang Zhang*, Badreddine Ratni, Qinghua Song, Xumin Ding*, Qun Wu, Shah Nawaz Burokur* and Patrice Genevet*, Independent phase modulation for quadruplex polarization channels enabled by chirality-assisted geometric-phase metasurfaces, Nature Communications 11, 4186 (2020) (IF=12.121,中科院一区)DOI: https://doi.org/10.1038/s41467-020-17773-6微信推送: https://mp.weixin.qq.com/s/GnqO6N5mCARPuGmHm74z3g40. Xumin Ding#, Zhuochao Wang#, Guangwei Hu#, Jian Liu#, Kuang Zhang, Haoyu Li, Badreddine Ratni, Shah Nawaz Burokur, Qun Wu, Jiubin Tan & Cheng-Wei Qiu*, Metasurface Holographic Image Projection based on Mathematical Properties of Fourier Transform. PhotoniX 1, 16 (2020).DOI: https://doi.org/10.1186/s43074-020-00016-8 微信推送:https://mp.weixin.qq.com/s/cHkT4q19YWnBO03Sm1ftAA39. K Zhang*, Y Yuan, X Ding*, H Li, B Ratni, Q Wu, J Liu, SN Burokur*, J Tan, Polarization-Engineered Noninterleaved Metasurface for Integer and Fractional Orbital Angular Momentum Multiplexing, Laser & Photonics Reviews 15 (1), 2000351, 2020 (IF= 10.655, 中科院一区)https://doi.org/10.1002/lpor.20200035138. Yueyi Yuan#, Shang Sun#, Yang Chen#, Kuang Zhang*, Xumin Ding*, Badreddine Ratni Qun Wu, Shah Nawaz Burokur* and Cheng-Wei Qiu*, A Fully Phase-Modulated Metasurface as An Energy-Controllable Circular Polarization Router, Adv. Sci., 2020, 2001437.(IF=15.84,中科院一区)DOI: https://doi.org/10.1002/advs.202001437微信推送:https://mp.weixin.qq.com/s/DhpvXKfYHvSnULxi9l7fgQ37. Chunsheng Guan#, Jian Liu#, Xumin Ding*, Zhuochao Wang, Kuang Zhang*, Haoyu Li, Ming Jin,Shah Nawaz Burokur* and Qun Wu, Dual-polarized multiplexed meta-holograms utilizing coding metasurface, Nanophotonics, 20200237,2020(IF=7.491,中科院一区)DOI: https://doi.org/10.1515/nanoph-2020-023736. Chunsheng Guan, Haoyu Li, Xumin Ding*, Zhuochao Wang, Kuang Zhang*, Ming Jin, Shah Nawaz Burokur*, Jian Liu, and Qun Wu, Dual-Polarized Dual-Channel Helicity-Switching or Helicity-Preserving Retroreflectors Utilizing 1-Bit Coding Metasurfaces, ACS Appl. Electron. Mater., 2020DOI: https://doi.org/10.1021/acsaelm.0c0065035. Yue Wang, Chunsheng Guan, Haoyu Li, Xumin Ding*, Kuang Zhang*, Jinxiang Wang, Shah Nawaz Burokur*, Jian Liu, Qun Wu, Dual-polarized Tri-channel Encrypted Holography Based on Geometric Phase Metasurface, Advanced Photonics Research, 2020DOI: https://doi.org/10.1002/adpr.20200002234. Zhuochao Wang, Xumin Ding*, Shengying Liu, Kuang Zhang*, and Qun Wu, Polarization-multiplexed Huygens metasurface holography,Optics Letters 2020, 45 19, 5488-5491DOI: https://doi.org/10.1364/OL.40306033. Chunsheng Guan, Xumin Ding*, Zhuochao Wang, Kuang Zhang*, Ming Jin, Shah Nawaz Burokur*, and Qun Wu, Helicity-switched hologram utilizing a polarization-free multi-bit coding metasurface, Opt. Express 28(15), 22669-22678 (2020)DOI: https://doi.org/10.1364/OE.40027432. Badreddine Ratni#,*, Zhuochao Wang#, Kuang Zhang, Xumin Ding*, André de Lustrac, Gérard-Pascal Piau, and Shah Nawaz Burokur*, Dynamically Controlling Spatial Energy Distribution with a Holographic Metamirror for Adaptive Focusing, Phys. Rev. Applied 13(3), 034006, 2020DOI: https://doi.org/10.1103/PhysRevApplied.13.03400631. Z Wang#, J Liu#, X Ding*, W Zhao, K Zhang*, H Li, B Ratni, SN Burokur*, Q Wu, Three-Dimensional Microwave Holography Based on Broadband Huygens' Metasurface. Phys. Rev. Applied, 13 (1), 014033, 2020DOI: https://doi.org/10.1103/PhysRevApplied.13.014033 201930. X Liu, C Guan,X Ding*, K Zhang, S Liu, J Zhou, Q Wu, Perfect anomalous reflection and refraction utilizing binary Pancharatnam–Berry phase elements based metasurfaces, Journal of Physics D: Applied Physics, 2019, 53 (6), 0651112019 JPD Guan.pdf29. Y Wang, K Zhang*, Y Yuan, X Ding*, B Ratni, SN Burokur*, Q Wu, Planar vortex beam generator for circularly polarized incidence based on FSS, IEEE Transactions on Antennas and Propagation, 2019.DOI: 10.1109/TAP.2019.29386662019 TAP.pdf28. X Ding*, C Guan, Z Wang, S Liu, K Zhang, X Gu, Q Wu, M Jin, Metasurface for Bending the Reflected Wave Under Oblique Incidence, IEEE Transactions on Magnetics, 2019, 55 (11), 1-4.2019 TransMag Guan.pdf27. Y Wang, K Zhang*, Y Yuan, X Ding, G Yang, J Fu, Q Wu, Generation of High-Efficiency Vortex Beam Carrying OAM Mode Based on Miniaturized Element Frequency Selective Surfaces, IEEE Transactions on Magnetics, 2019, 55 (10), 1-42019 TransMag WangYX.pdf26. Xumin Ding*, Zhuochao Wang, Chunsheng Guan, Shengying Liu, Kuang Zhang, Xuemai Gu, Qun Wu, Spatial Rotation Operations on Huygens Metasurface Hologram in Microwave Regime, IEEE Transactions on Magnetics, 2019, 55 10. 2019 TransMag Zhuochao.pdf25. Kuang Zhang*, Yueyi Yuan, Xumin Ding*, Badreddine Ratni, Shah Nawaz Burokur*, and Qun Wu, High-Efficiency Metalenses with Switchable Functionalities in Microwave Region, ACS Applied Materials & Interfaces, 2019 11 (31), 28423-28430 (IF = 8.456, 中科院一区)acsami.9b07102.pdf24. Liu S.Y., Jiang K.B., Xu G.B., Ding X.M.*, Zhang K.*, Fu J.H., Wu Q. (2019): A Dual-Band Shared Aperture Antenna Array in Ku/Ka-Bands for Beam Scanning Applications, IEEE Access, 7, 78794-78802IEEE ACCESS.pdf23. Wang, Y., Guan C.S., Ding X.M.*, Zhang K.*, Ratni B., Burokur S.N.*, Gu X.M., Wu Q. (2019): Multi-focus hologram utilizing Pancharatnam-Berry phase elements based metamirrors, Optics Letters, 44(9), 2189-2192.ol-44-9-2189.pdf22. Guan C.S., Wang Z.C., Ding X.M.*, Zhang K.*, Ratni B., Burokur S.N.*, Jin M., Wu Q. (2019): Coding Huygens’ metasurface for enhanced quality holographic imaging, Optics Express, 27(5), 7108-7119.oe-27-5-7108.pdf21. Yuan Y.Y., Zhang K.*, Ding X.M.*, Ratni B., Burokur S.N.*, Wu Q. (2019): Complementary transmissive ultra-thin meta-deflectors for broadband polarization-independent refractions in the microwave region, Photonics Research, 7(1), 80-88.(ESI高被引论文,IF=6.099, 中科院一区)Photonics Research.pdf2018 20. Z. Wang, X. Ding*, K. Zhang*, B.Ratni, S. N. Burokur*, X. Gu and Q. Wu, Huygens Metasurface Holograms with theModulation of Focal Energy Distribution. Advanced Optical Materials, 2018,1800121. (IF=8.286, 中科院一区)Wang-AOM.pdf19. Kuang Zhang* Hao Yu, Xumin Ding* and Qun Wu Experimental validation of active holographic metasurface forelectrically beam steering. Optics Express, 26.5 (2018): 6316-6324.oe-26-5-6316.pdf18. Kuang Zhang*, Yueyi Yuan, Dawei Zhang, Xumin Ding*, Badreddine Ratni, Shah Nawaz Burokur*, Manjun Lu, Kun Tang, andQun Wu, Phase-engineered metalenses to generate converging and non-diffractivevortex beam carrying orbital angular momentum in microwave region, Optics Express, 2018, 26 2, pp: 1351-1360 (ESI高被引论文)oe-26-2-1351.pdf17. Ratni B.*, Yi J.J., Ding X.M., Lustrac A.D., Zhang K., Piau G-P., Burokur S.N.* (2018): Gradient phase partially reflecting surfaces for beam steering in microwave antennas, Optics Express, 26 (6), 6724-6738.oe-26-6-6724.pdf2017 16.Zhuochao Wang, Xumin Ding*, KuangZhang*, Wu Qun. Spacial Energy Distribution Manipulation with Multi-focusHuygens Metamirror. Scientific Reports, 2017, 7, 90Scientific reports.pdf15. Yueyi Yuan, Xumin Ding, Kuang Zhangand Qun Wu, Planar Efficient Metasurface for Vortex Beam Generating andConverging in Microwave Region, IEEE Transactions on Magnetics, 2017, 53 (6)trans on mag 07835629.pdf14. Dawei Zhang, Kuang Zhang, Qun Wu, Xumin Ding, and Xuejun Sha, High-efficiency surface plasmonic polaritonwaveguides with enhanced low-frequency performance in microwave frequencies, Optics Express 2017, 25 3, pp. 2121-2129oe-25-3-2121.pdf13. Dongliang Gao, Weiqiang Ding, Manuel Nieto-Vesperinas, Xumin Ding, Mahdy Rahman Chowdhury Mahdy, Tianhang Zhang,C.T. Lim, Cheng-Wei Qiu. Optical Manipulation from the Microscale to theNanoscale: Fundamentals, Advances, and Prospects, Light Science & Applications, 2017, 6: e17039 (ESI高被引论文, IF= 14.098, 中科院一区)1sa201739.pdf12. Chen,Ke; Feng, Yijun; Monticone, Francesco; Zhao, Junming; Zhu, Bo; Jiang, Tian; Zhang, Lei; Kim, Yongjune; Ding, Xumin; Zhang, Shuang; Alu, Andrea; Qiu, Cheng-Wei. A Reconfigurable Active Huygens' Metalens. Advanced Materials, 2017,29(1606422) (ESI高被引论文, IF= 27.398, 中科院一区)am active_Huygens_lens.pdf2016 11. Hao Yu, Xumin Ding*, Kuang Zhang,Yuming Wu, Qun Wu, Direction Finding System Using Planar Luneburg Lens, Applied Computational Electromagnetics Society Journal, 2016, 31, 7: 731-73610. Kuang Zhang, Xumin Ding, DeliangWo, Fanrong Meng and Qun Wu, Experimental validation of ultra-thin metalensesfor N-beam emissions based on transformation optics, Appl. Phys. Lett., 2016,108, 053508apl 1.4941545.pdf2015 9. Xumin Ding, Hao Yu, ShaoqingZhang, Yumin Wu, Kuang Zhang and Qun Wu, Ultrathin Metasurface for ControllingElectromagnetic Wave with Broad Bandwidth, IEEE Transactions on Magnetics,2015, 51 (11)trans on mag.pdf8.Xumin Ding, Francesco Monticone,Kuang Zhang, Lei Zhang, Dongliang Gao, Shah Nawaz Burokur, Andre de Lustrac,Qun Wu, Cheng-Wei Qiu and Andrea Alù, Ultrathin Pancharatnam-Berry Metasurfacewith Maximal Cross-olarization Efficiency. Advanced Materials, 2015, 27(1195). (ESI高被引论文, IF= 27.398, 中科院一区)16 AM.pdf2014 7. Kuang Zhang, Xumin Ding, LiangZhang and Qun Wu,Anomalousthree-dimensional refraction in the microwave region by ultra-thin highefficiency metalens with phase discontinuities, New Journal of Physics, 2014,16(10): 103020New_J._Phys._16_103020.pdf6. Xumin Ding, Yuming Wu, KuangZhang, Hao Yu and Qun Wu. Theoretical study on a broadband, highcross-polarization conversion efficiency metalens based on phase discontinuity, J. Phys. D: Appl. Phys. 2014, 47, 275302 (Cover paper)J._Phys._D A_Appl._Phys._47_275302.pdf5. X. M. Ding, K. Zhang, H. Yu, L.Zhu, C. N. Feng and Q. Wu. A Novel Magnetic Coupling UHF Near field RFID ReaderAntenna Based on Multilayer-Printed-Dipoles Array, IEEE Transactions onMagnetics, 2014, 50 (1)T on M 06692951.pdf4. Lei Zhu, Fanyi Meng, Liang Dong, Jiahui Fu, Xumin Ding, and Qun Wu, Tunable Transparency Effect in a Symmetry Metamaterial Based on Subradiant Magnetic Resonance, IEEE Transactions on Magnetics, 2014, 50(1), 2101204T on M 06693001.pdf3. Lei Zhu, Jiahui Fu, Fanyi Meng,Xumin Ding, Liang Dong, and Qu Wu, Detuned Magnetic Dipoles InducedTransparency in Microstrip Line for Sensing, IEEE Transactions on Magnetics, 2014, 50(1), 4000604T on M.pdf2013 2. Lei Zhu, Fanyi Meng, Fang Zhang, Jiahui Fu, Qun Wu, Xumin Ding, and Lewei Li, An ultra-low loss split ringresonator by suppressing the electric dipole moment approach, Progress In Electromagnetics Research, 2013, 137, 239-2542012 1.Xumin Ding, Qun Wu, Kuang Zhang and Chunnan Feng. A Magnetic Coupling Dipole for UHF Near-field RFID Reader. IEEE Transactions on Magnetics, 2012, 48 (11)T on M.pdf 相关热点