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董正高教授简历

董正高 男 博士、教授、博士生导师,江苏兴化人

Email: zgdong@seu.edu.cn              

Tel025-52090606-8409 Office

 

科 研 经 历:

2006.6-现今 东南大学物理系   (工作)

2010.9-2011.8年 美国加州大学Berkeley分校

 (国家公派博士后, Prof. Xiang Zhang's Lab

2003.92006.6年 南京大学物理系

 (凝聚态物理专业博士, 介电超晶格实验室

2000.92003.6年 苏州大学物理系

 (材料物理与化学专业硕士,功能性纳米材料研究组

 

承 担 的 课 题:

[1] 金属-半导体特异介质中基于Fano型杂化磁共振模的纳米发射特性研究

    国家自然科学基金(面上项目)主持 2012.1---2015.12

[2] 杂化磁响应特异介质中的光学特性研究  

江苏自然科学基金(面上项目)主持 2013.7---2016.6

[3] 等离激元微纳结构的磁有序光学响应

    基本科研业务费重大科学研究引导基金主持 2013.5---2013.12

[4] 东南大学优秀青年教师教学科研资助项目  主持 2011.1----2013.12

 

目前主要研究领域:特异介质薄膜的光学磁响应(Optical Magnetism of Nano-structured Metamaterial films);纳米等离激元光子学(Nano-plasmonics)。

欢迎各位同学联系加入本课题组![可选择理论方法、计算电磁仿真方法、样品制备与光学测试等实验方法,开展人工纳米结构金属薄膜的新颖光学特性研究]

 

发表的主要论文(SCI论文40余篇,400余次引用,H因子14

[26] Z. G. Dong, J. Zhu, X. Yin, J. Li, C. Lu, and X. Zhang

All-optical Hall effect by the dynamic toroidal moment in a cavity-based metamaterial

Physical Review B 87, 245429 (2013).

[25] W. B. Lu, W. Zhu, H. J. Xu, Z. H. Ni, Z. G. Dong, and T. J. Cui

 Flexible transformation plasmonics using graphene

 Optics Express 21, 10475 (2013).

[24] Jian Shao, Jiaqi Li, Jie Li, Yu-Kun Wang, Z. G. Dong*, P. Chen, R. X. Wu, and Y. Zhai

Analogue of electromagnetically induced transparency by doubly degenerate modes in a U-shaped metamaterial

Applied Physics Letters 102, 034106 (2013).  

[23] Z. G. Dong, J. Zhu, J. Rho, J. Q. Li, C. Lu, X. Yin, and X. Zhang

Optical toroidal dipolar response by an asymmetric double-bar metamaterial

Applied Physics Letters 101, 144105 (2012).      

[22] Z. G. Dong, P. Ni, J. Zhu, X. Yin, and X. Zhang

Toroidal dipole response in a multifold double-ring metamaterial

Optics Express 20, 13065 (2012).

[21] H. J. Xu, W. B. Lu, Y. Jiang, and Z. G. Dong

Beam-scanning planar lens based on graphene

Applied Physics Letters 100, 051903 (2012).

[20] Y. K. Wang, Z. G. Dong*, and Y. Zhai*

   Artificial permeability and antibonding magnetic resonance in a copper-structured metamaterial with symmetry-broken ring-plate resonators

Journal of Nanoscience and Nanotechnology 12, 6521 (2012).

[19] Z. G. Dong, P. Ni, J. Zhu, and X. Zhang

Transparency window for the absorptive dipole resonance in a symmetry-reduced grating structure

Optics Express 20, 7206 (2012).

[18] Z. G. Dong, H. Liu, T. Li, M. X. Xu, W. B. Lu, and S. N. Zhu

Fast roll-off and sensitivity of a transparency window with dual magnetic resonant modes from a split double-ring metamaterial

Physics Letters A 375, 1148 (2011).

[17] Z. G. Dong, H. Liu, M. X. Xu, T. Li, S. M. Wang, J. X. Cao, S. N. Zhu, and X. Zhang

Role of asymmetric environment on the dark mode excitation in metamaterial analogue of electromagnetically-induced transparency

Optics Express 18 (21), 22412-22417 (2010).

[16] Wei Bing Lu, Zhong Fu Ji, Zheng-Gao Dong, Xue Wei Ping, and Tie Jun Cui

Left-handed transmission properties of planar metamaterials based on complementary double ring resonators

Journal of Applied Physics 108 (3), 033717 (2010).

[15] Z. G. Dong, H. Liu, J. X. Cao, T. Li, S. M. Wang, S. N. Zhu, and X. Zhang

Enhanced sensing performance by the plasmonic analog of electromagnetically induced transparency in active metamaterials

Applied Physics Letters 97 (11), 114101 (2010).

[14] Z. G. Dong, H. Liu, M. X. Xu, T. Li, S. M. Wang, S. N. Zhu, and X. Zhang

Plasmonically induced transparent magnetic resonance in a metallic metamaterial composed of asymmetric double bars

Optics Express 18, 18229 (2010).

[13] Z. G. Dong, H. Liu, T. Li, Z. H. Zhu, S. M. Wang, J. X. Cao, S. N. Zhu, and X. Zhang

Optical loss compensation in a bulk left-handed metamaterial by the gain in quantum dots

Applied Physics Letters 96, 044104 (2010).

[12] Z. G. Dong, H. Liu, T. Li, M. X. Xu, W. B. Lu, and S. N. Zhu

Hybridization influence on the plasmon-mediated lasing effect in active metamaterials

Physics Letters A 374, 4279 (2010).

[11] Z. G. Dong, H. Liu, T. Li, Z. H. Zhu, S. M. Wang, J. X. Cao, S. N. Zhu, and X. Zhang

Modeling the directed transmission and reflection enhancements of the lasing surface plasmon amplification by stimulated emission of radiation in active metamaterials

Physical Review B 80, 235116 (2009).

[10] Z. G. Dong, M. X. Xu, H. Liu, T. Li, and S. N. Zhu

Parametric simulations of the metallic double-ring metamaterials: geometric optimization and terahertz response

Journal of Applied Physics 105, 034907 (2009). 

[9] Z. G. Dong, H. Liu, T. Li, Z. H. Zhu, S.M. Wang, J. X. Cao, S. N. Zhu, and X. Zhang

Resonance amplification of left-handed transmission at optical frequencies by stimulated emission of radiation in active metamaterials

Optics Express 16, 20974 (2008).

[8] Z. G. Dong, M. X. Xu, S. Y. Lei, H. Liu, T. Li, F. M. Wang, and S. N. Zhu

Negative refraction with magnetic resonance in a double-ring metamaterial

Applied Physics Letters 92, 064101 (2008).

[7] Z. G. Dong, S. Y. Lei, M. X. Xu, H. Liu, T. Li, F. M. Wang, and S. N. Zhu

Negative index of refraction in metallic metamaterial comprising split-ring resonators

Physical Review E 77, 056609 (2008). 

[6] Z. G. Dong, M. X. Xu, H. Liu, T. Li, and S. N. Zhu

Omnidirectional magnetic-resonance transmission and its elimination in a metallic metamaterial comprising rings and plates

Physical Review E 78, 066612 (2008).

[5] Z. G. Dong, S.Y. Lei, Q. Li, M.X. Xu, H. Liu, T. Li, F.M. Wang, and S. N. Zhu

Non-left-handed transmission and bianisotropic effect in π-shaped metallic metamaterial

Physical Review B 75, 075117 (2007).

[4] Z. G. Dong, S. N. Zhu, H. Liu, J. Zhu, and Wenwu. Cao

Numerical simulations of negative-index refraction in wedge-shaped metamaterials

Physical Review E 72, 016607 (2005).

[3] Dong Zheng-Gao, Zhu Shi-Ning, and Liu Hui

Numerical simulations of negative-index refraction in a lamellar composite with alternating single negative layers

Chinese Physics 15, 1772 (2006).

[2] Z. G. Dong, F. Y. Wang, Y. X. Fan, P. Lu, S. N. Zhu, P. K. Lim, and T. B. Tang

Nd-doped GdVO4 films prepared by pulsed-laser deposition on SiO2/Si substrate

Applied Physics Letters 86, 151908 (2005).

[1] Zhenggao Dong, Mingrong Shen, and Wenwu Cao

Fatigue-free La-modified PbTiO3 thin films prepared by pulsed laser deposition on Pt/Ti/SiO2/Si substrates

Applied Physics Letters 82, 1449 (2003).

 

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