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西北工业大学物理科学与技术学院导师教师师资介绍简介-梅霆

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基本信息 The basic information
梅霆

物理科学与技术学院


博士研究生毕业

博士


教授










工作经历 Work Experience
91.04 – 95.09 浙江大学光电信息工程系助理研究员
97.06 – 00.10 新加坡微电子所研究工程师
00.10 – 12.12 新加坡南洋理工大学电机及电子工程系助理教授、副教授终身教职、客座教授、重大科研计划首席科学家
09.06 – 13.09 华南师范大学光电材料所所长、教授
13.04至今 西北工业大学物理科学与技术学院(19.11前为理学院)****





教育教学 Education And Teaching
半导体光电子器件与应用(本科生课程)、微纳光子学 (研究生课程)





科学研究 Scientific Research

欢迎光学工程(工科)、物理学/光学(理科)领域对以下研究方向有兴趣的学生推免、报考研究生(博士、硕士)。
欢迎优秀博士毕业生加入本研究组开展博士后工作。



研究方向
-微纳光子学(表面等离激元;表面、针尖增强拉曼光谱;米氏共振;超表面等 )
-超快光学(时分辨光谱、宽禁带半导体非线性效应、飞秒加工等)
-半导体光电子材料结构设计与研究(热电子增强光电探测器、多层膜结构器件等)
-光纤结构光场的调控及应用


主持项目
-国家自然科学基金重大研究计划重点项目(2020/01-2023/12)光纤针尖基时空超分辨光场调控及单分子动力学应用研究
-国家自然科学基金面上项目(2017/01-2020/12)金属-半导体结构增强光学非线性的机制及应用

-国家自然科学基金面上项目(2014/01-2017/12)慢光表面等离子波导吸收损耗问题的研究
-国家自然科学基金面上项目(2012/01-2015/12)利用低维半导体有源介质操控表面等离极化激元
-陕西省自然科学基础研究重点项目(2019/01-2018/12) 金属-半导体结构增强光学非线性的机制及应用


学术服务
-中国光学工程学会常务理事
-Advanced Photonics期刊编委
-电气与电子工程师协会(IEEE)资深会员,曾任IEEE光子协会新加坡分会副主席和理事







学术成果 Academic Achievements
近期代表性学术论文
- K. Du, P. Li, K. Gao, H. Wang, Z. Q. Yang, W. D. Zhang, F. J. Xiao, S. J. Chua, T. Mei*. "Strong coupling between dark plasmon and anapole modes," J. Phys. Chem. Lett. 10, 4699–4705 (2019).
- H. Wang, K. Du, C. H. Jiang, Z. Q. Yang, L. X. Ren, W. D. Zhang*, S. J. Chua, T. Mei*. "Extended Drude model for intraband-transition-induced optical nonlinearity," Phys. Rev. Appl. 11, 064062 (2019).
- Z. Y. Gao, P. F. Chang, L. G. Huang, F. Gao, D. Mao, W. D. Zhang*, T. Mei*, "All-fiber frequency shifter consists of fiber Bragg grating modulated via acoustic flexural wave for optical heterodyne measurement," Opt. Lett. 44, 3725 (2019).
- M. Liu, F. F. Lu, W. D. Zhang*, L. G. Huang, S.H. Liang, D. Mao, F. Gao, T. Mei*, J. L. Zhao, “Highly efficient plasmonic nanofocusing on a metallized fiber tip with internal illumination of the radial vector mode using an acousto-optic coupling approach,” Nanophotonics 8, 921 (2019).
- M. Liu, W. D. Zhang*, F. F. Lu, T. Y. Xue, X. Li, L. Zhang, D. Mao, L. G. Huang, F. Gao, T. Mei*, J. L. Zhao. Plasmonic tip internally excited via an azimuthal vector beam for surface enhanced Raman spectroscopy. Photonics Res. 7, 526 (2019).
- F. F. Lu, W. D. Zhang*, J. C. Zhang, L. Zhang, T. Y. Xue, M. Liu, C. Meng, D. Mao, T. Mei*, "Dynamic manipulation of optical chirality for gammadion nanostructure," Appl. Phys. Express 12, 072015 (2019).
- Z. Q. Yang, K. Du, F. F. Lu, Y. Pang, S. J. Hua, X. T. Gan, W. D. Zhang, S. J. Chua, T. Mei*, “Silica nanocone array as a template for fabricating a plasmon induced hot electron photodetector,” Photonics Res. 7, 294 (2019). (Issue Cover Page)
- F.F. Lu, W. D. Zhang*, L. Zhang, M. Liu, T. Y. Xue, L. G. Huang, F. Gao, T. Mei*,” Nanofocusing of surface plasmon polaritons on metal-coated fiber tip under internal excitation of radial vector beam,” Plasmonics (2019). (online)
- Z. Q. Yang, K. Du, H. Wang, F. F. Lu, Y. Pang, J. Wang, X. T. Gan, W. D. Zhang, S. J. Hua, T. Mei*, S. J. Chua, “Near-infrared photodetection with plasmon-induced hot electrons using silicon nanopillar array structure,” Nanotechnology 30, 5204 (2019).
- F. F. Lu, T. X. Huang, L. Han, H. S. Su, H. Wang, M. Liu, W. D. Zhang*, X. Wang, T. Mei*, “Tip-enhanced Raman spectroscopy with high-order fiber vector beam excitation,” Sensors 18, 03841 (2018).
- F. F. Lu, W. D. Zhang*, L. G. Huang, S.H. Liang, D. Mao, F. Gao, T. Mei*, J. L. Zhao, "Mode evolution and nanofocusing of grating-coupled surface plasmon polaritons on the metallic tip," Opto-Electronic Adv. 1, 180010 (2018). (Issue Cover Page, Best Paper Award)
- W. D. Zhang*, C. Li, K. Gao, F. F. Lu, M. Liu, X. Li, L. Zhang, D. Mao, F. Gao, L. G. Huang, T. Mei*, J. L. Zhao, "Surface-enhanced Raman spectroscopy with Au-nanoparticles substrates fabricated by using femtosecond pulse," Nanotechnology 29, 205301 (2018).
- S. H. Liang, C. H. Jiang, Z. Q. Yang, D. C. Li, W. D. Zhang, T. Mei*, D. W. Zhang “Plasmonic slow light waveguide with hyperbolic metamaterials claddings,” J. Opt. 20, 065001 (2018).
- Z. S. Chen, H. Zhang, H. Li, L. Wan, N. Zhu*, T. Mei*, “Nonlocal Effects on Field Enhancement in Dimer” Plasmonics 13, 2261 (2019).
- W. D. Zhang*, K. Y. Wei, H. Wang, D. Mao1, F. Gao, L. G. Huang, T. Mei*, J. L. Zhao, “Tunable-wavelength picosecond vortex generation in fiber and its application in frequency-doubled vortex,” J. Opt. 20, 014004 (2018).
- L. Wan, N. Zhu, R. Y. Zhang, T. Mei*, “All-polymeric planar waveguide devices based on a gas-assisted thermal imprinting technique,” Microsyst. Technol. 23, 5271 (2017).
- H. Yang, X. J. Li, T. Mei*, J. B. Zheng, “The lead selenide photoconductive sensitization via oxygen ion implantation with enhanced optical absorption and carrier mobility,” J. Mater. Sci. 52, 10779 (2017).
- Z. Q. Yang, M. Liu, S. H. Liang, W. D. Zhang, T. Mei*, D. W. Zhang, S. J. Chua, “Hybrid modes in plasmonic cavity array for enhanced hot-electron photodetection,” Opt. Express 25, 297563 (2017).
- K. Du, H. K. Li, K. Q. Guo, H. Wang1, D. C. Li, W. D. Zhang, T. Mei*, S. J. Chua, “The rate equation based optical model for phosphor-converted white light-emitting diodes,” J. Phys. D: Appl. Phys. 50, 095101(2017).
- W. D. Zhang, L. G. Huang, K. Y. Wei, P. Li, B. Q. Jiang, D. Mao, F. Gao, T. Mei*, G. Q. Zhang, J. L. Zhao, "High-order optical vortex generation in few-mode fiber via cascaded acoustically-driven vector mode conversion," Opt. Lett. 41, 5082 (2016).
- D. C. Li, S. H. Liang, K. Du, W. D. Zhang, T. Mei*, “Wide band dispersionless slow light in hetero-MIM plasmonic waveguide” Opt. Express 24, 22432 (2016).
- W. D. Zhang, K. Y. Wei, L. G. Huang, D. Mao, B. Q. Jiang, F. Gao, G. Q. Zhang, T. Mei*, J. L. Zhao, "Optical vortex generation with wavelength tunability based on an acoustically-induced fiber grating," Opt. Express 24, 19278 (2016).
- L. Wan, N. Zhu, X. Li, R. Y. Zhang. T. Mei*, “Optimization for solid polymer microstructure replication using gas-assisted hot embossing under low pressure,” Int. J. Precis. Eng. Man. 17, 1067 (2016).
- W. D. Zhang, L. G. Huang, K. Y. Wei, P. Li, B. Q. Jiang, D. Mao, F. Gao, T. Mei*, G. Q. Zhang, J. L. Zhao, "Cylindrical vector beam generation in fiber with mode selectivity and wavelength tunability over broadband by acoustic flexural wave," Opt. Express 24, 10376 (2016).
- L. Wan, X. Li, N. Zhu, R. Y. Zhang. T. Mei*, “Optimization for etching shallow ridge and trench profiles on silicon based on continuous etching process in ICPRIE system,” Microsyst. Technol. 22, 2133 (2016).
- Y. Lu, H. Zhang, T. Mei*, “The influence of rapid thermal annealing processed metal-semiconductor contact on plasmonic waveguide under electrical pumping,” J. Opt. Soc. Korea 20, 130 (2016).
- N. Y. Wang, Y. A. Yin, B. J. Zhao, T. Mei*, “Performance analysis of GaN-based light-emitting diodes with lattice-matched InGaN/AlInN/InGaN quantum-well barriers,” J. Disp. Technol. 11, 1056 (2015).
- H. Zhang, T. Mei*, Y. C. Li, N. Zhu, G. Jin, “Mode size and loss in strongly asymmetric plasmonic waveguide with dielectric cladding,” J. Opt. 17, 125001 (2015).
- S. X. Hu, K. Du, T. Mei*, L. Wan, N. Zhu, “Ultra-compact LED lens with double freeform surfaces for uniform illumination,” Opt. Express 23, 20350 (2015).
- H. Li, N. Zhu, H. Zhang, Z. S. Chen, T.Mei*, “Nonlocal effects on second harmonic generation in nanofilm plasmonic structure,” Opt. Commun. 339, 177 (2015).



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