同济大学
导师风采
江涛
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个人信息

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  • 教授
  • 导师类别:硕士,博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

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Contact Information

  • 所属院系:物理科学与工程学院
  • 所属专业: 物理学  、 电子信息
  • 邮箱 : tjiang@tongji.edu.cn
  • 工作电话 : -

个人简介

Personal Profile

江涛,物理科学与工程学院博士生导师,教授,现任中共同济大学物理科学与工程学院党委第十支部书记,同济大学精密光学工程技术研究所副所长,同济大学党委学生工作部副部长(挂职)。近年来入选国家海外高层次人才计划青年项目,上海市青年五四奖章个人、上海科技青年35人引领计划、上海市浦江人才计划、以及浦江创新论坛第二届 “寻找青年的声音”代表。目前主持两项国家自然科学基金。在Nature Nanotechnology和Nature Photonics等高水平期刊发表20余篇论文,获得中国光学十大进展(基础研究类)。主要聚焦发展超高空间分辨和超快时间分辨的扫描光学显微术,从可见光到中红外波段,开展低维微纳结构的光学及光电器件的性能表征和机制研究。具体包含三个方面:创新表征微纳结构的光测量技术;深入揭示低维材料的光物理机制;探索基于微纳器件的光操控应用。


  • 研究方向Research Directions
纳米光学,微纳光电器件,光学显微,超快光学,非线性光学,低维材料
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
科研项目

主持国自然面上项目、国自然青年科学基金项目、上海浦江人才计划、上海市自然科学基金面上项目、科技部高端外专项目-个人项目、科技部高端外专项目-团队项目。


研究成果

1. Wenjin Luo, Benjamin G. Whetten, Vasily Kravtsov, Ashutosh Singh, Yibo Yang, Di Huang, Xinbin Cheng, Tao Jiang*, Alexey Belyanin*, and Markus B. Raschke*, Ultrafast Nanoimaging of Electronic Coherence of Monolayer WSe2, Nano Letters23(5), 1767-1773 (2023).

2.Di Huang,Tao. Jiang, Yangfan Yi, Yuwei Shan, Yingguo Li, Zhihong Zhang, Kaihui Liu, Wei-Tao Liu, and Shiwei Wu*, Selective excitation of four-wave mixing by helicity in gated graphene,Opt. Lett.47, 234-237 (2022).

3.F. Menges*, H. Yang, S. Berweger, A. Roy,T. Jiang, M. B. Raschke*, Substrate-enhanced photothermal nanoimaging of surface polaritons in monolayer graphene,APL Photonics6, 041301 (2021).

4.Y. Hu, S. J. Teat, W. Gong, Z. Zhou, Y. Jin, H. Chen, J. Wu, Y. Cui,T. Jiang, X. Cheng, W. Zhang*, Single Crystals of Mechanically Entwined Helical Covalent Polymers,Nature Chemistry13, 660-665 (2021).

5.M. A. May#,T. Jiang#, C. Du, K. D. Park, X. Xu, A. Belyanin*, M. B. Raschke*, Nanocavity Clock Spectroscopy: Resolving Competing Exciton Dynamics in WSe2/MoSe2 Heterobilayers,Nano Letters21, 522-528 (2021). (#Contributed equally).

6.T. Jiang, V. Kravtsov, M. Tokman, A. Belyanin*, M. B. Raschke*, Ultrafast coherent nonlinear nanooptics and nanoimaging of graphene,Nature Nanotechnology14, 838-843 (2019).

7.J. X. Cheng,D. Huang,T. Jiang,Y. W. Shan,Y. G. Li, S. W. Wu, W. T. Liu*, Chiral selection rules for multi-photon processes in two-dimensional honeycomb materials,Opt. Lett.44(9), 2141-2144 (2019).

8.Y. Zhang, D. Huang, Y. W. Shan,T. Jiang, Z. H. Zhang, K. H. Liu, L. Shi, J. L. Cheng, J. E. Sipe, W. T. Liu*, S. W. Wu*, Doping-induced second harmonic generation in centrosymmetric graphene from quadrupole response,Physical Review Letters122,047401 (2019).

9.D. Huang#,T. Jiang#, Y. Zhang, Y. W. Shan, X. D. Fan, Z. H. Zhang, Y. Y. Dai, L. Shi, K. H. Liu, C. G. Zeng, J. Zi, W. T. Liu*, S. W. Wu*, Gate Switching of Ultrafast Photoluminescence in Graphene,Nano Letters18, 7985–7990 (2018). (#Contributed equally)

10.T. Jiang#, D. Huang#, J. L. Cheng, X. D. Fan, Z. H. Zhang, Y. W. Shan, Y. F. Yi, Y. Y. Dai, L. Shi, K. H. Liu, C. G. Zeng, J. Zi, J. E. Sipe, Y. R. Shen, W. T. Liu*, S. W. Wu*, Gate-tunable third-order nonlinear optical response of massless Dirac fermions in graphene,Nature Photonics12, 430-436 (2018). (#Contributed equally)

11.T. Jiang#, H. Hong#, C. Liu, W. T. Liu, K. H. Liu*, S. W. Wu*, Probing Phonon Dynamics in Individual Single-walled Carbon Nanotubes,Nano Letters18, 2590 (2018).

12.Y. Y. Dai, Y. Y. Xia,T. Jiang, A. Chen, Y. W. Zhang, Y. J. Bai, G. Q. Du, F. Guan, S. W. Wu, X. H. Liu*, L. Shi*, J. Zi*, Dynamical Tuning of Graphene Plasmonic Resonances by Ultraviolet Illuminations,Adv. Optical Mater.6, 1701081 (2018).

13.K. D. Park,T. Jiang, G. Clark, X. Xu, M. B. Raschke*, Radiative control of dark excitons at room temperature by nano-optical antenna-tip Purcell effect,Nature Nanotechnology13, 59–64 (2018).

14.N. Guo*, W. D. Hu*,T. Jiang, F. Gong, W. J. Luo, W. C. Qiu, P. Wang, L. Liu, S. W. Wu, L. Liao, X. S. Chen, and W. Lu, High-quality infrared imaging with graphene photodetectors at room temperature,Nanoscale8, 16065 (2016).

15.J. X. Cheng#,T. Jiang#, Q. Q. Ji, Y. Zhang, Z. M. Li, Y. W. Shan, Y. F. Zhang, X. G. Gong, W. T. Liu, S. W. Wu*, Kinetic Nature of Grain Boundary Formation in As-grown MoS2Monolayers,Adv. Mater.27, 4069–4074 (2015). (#Contributed equally)

16.B. Kong, J. Tang, Y. Y. Zhang,T. Jiang, X. G. Gong, C. X. Peng, J. Wei, J. P. Yang, Y. C. Wang, X. B. Wang, G. F. Zheng*, C. Selomulya*, D. Y. Zhao*, Incorporation of well-dispersed sub-5-nm graphitic pencil nanodots into ordered mesoporous frameworks,Nature Chemistry8, 171–178 (2016).

17.T. Jiang, H. R. Liu, D. Huang, S. Zhang, Y. G. Li, X. G. Gong*, Y. R. Shen, W. T. Liu*, S. W. Wu*, Valley and band structure engineering of folded MoS2bilayers.Nature Nanotechnology9, 825-829 (2014).

18.J. S. Miao, W. D. Hu*, N. Guo, Z. Y. Lu, X. Q. Liu, L. Liao*, P. P. Chen,T. Jiang, S. W. Wu, J. C. Ho, L. Wang, X. S. Chen, W. Lu,High-Responsivity Graphene/InAs Nanowire Heterojunction Near-Infrared Photodetectors with Distinct Photocurrent On/Off Ratios,Small, DOI: 10.1002/smll.201402312 (2014).

19.N. Guo, W. D. Hu*, L. Liao*, S. P. Yip, J. C. Ho, J. S. Miao, Z. Zhang, J. Zou,T. Jiang, S. W. Wu, X. S. Chen, W. Lu*,Anomalous and Highly Efficient InAs Nanowire Phototransistors Based on Majority Carrier Transport at Room Temperature,Advanced Materials, DOI: 10.1002/adma.201403664 (2014).


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