教授、博士生导师
江苏省六大人才高峰高层次人才、
南京邮电大学鼎新学者
联系方式 2018/07–至今,南京邮电大学,材料科学与工程学院,教授 2020/07–2022/07,南京白下高新区,科技创新部(挂职),副部长 (兼任秦淮硅巷创新实验室特聘专家) 2015/07–2016/07,英国埃克塞特大学,物理学院,访问学者 1. 国家自然科学基金面上项目,基于上下转换发光的宽光谱无序色散成像光谱仪关键技术研究(62074082),59万,2021.1-2024.12。负责人 4. 江苏省自然科学基金面上研究项目,表面等离子体波在THz波段的调制与检测机理研究(BK20151512),10万,2015.7-2018.6。负责人。 [1] Zheng-shuai Jiang, Xin-yang Zhao, Wei Huang, and Tao Yang*, Improvement of the Spectral Reconstruction Process with Pretreatment of Matrix in Convex Optimization, Current Optics and Photonics, 2021, 5(3): 322–328. [2] Tao Yang, Yue Zhang, Jia-cheng Ge, Lei Wang, Yi-qiang Qin, Yong-yuan Zhu, Wei Huang, Ho-pui Ho*, Compact terahertz spectrometer based on sequential modulation of disordered rough surfaces, Optics Letters, 2019, 44(24): 6061-6064. [3] Tao Yang, Jia-cheng Ge, Xing-ao Li, Rayko Ivanov Stantchev, Yong-yuan Zhu, Yuan Zhou, Wei Huang*, Non-destructive plasma frequency measurement for a semiconductor thin film using broadband surface plasmon polaritons, Optics Communications, 2018, 410: 926–929. [4] Tao Yang, Ju-sheng Xin, Yong-yuan Zhu, Yi-qiang Qin, Xing-ao Li, Wei Huang*, Spectrum analysis of bio-chemical thin films on the surface of a semiconductor by terahertz surface plasmon polaritons, Infrared and Millimeter Waves, 2016, 35(6): 667-671. [5] Tao Yang, Yuan-yi Li, Rayko Ivanov Stantchev, Yong-yuan Zhu*, Yi-qiang Qin, Xin-hui Zhou, Wei Huang, Detection of defects on the surface of a semiconductor by terahertz surface plasmon polaritons, Applied Optics, 2016, 55(15): 4139-4144. [6] Tao Yang, Rayko Ivanov Stantchev, Yuan Zhou, Ho-pui Ho, Yong-yuan Zhu, Yi-qiang Qin*, Wei Huang, Investigation of terahertz surface plasmon modulation with optical injection of free carriers, Optical Engineering, 2016, 55(6): 064109. [7] Tao Yang, Cao Xu, Ho-pui Ho*, Yong-yuan Zhu, Xu-hao Hong, Qian-jin Wang, Yu-chao Chen, Xing-ao Li, Xin-hui Zhou, Ming-Dong Yi, Wei Huang, Miniature spectro- meter based on diffraction in a dispersive hole array, Optics Letters, 2015, 40(13): 3217-3220. [8] Tao Yang, Jing-xiao Peng, Xing-ao Li, Xiao Shen, Xin-hui Zhou, Xiao-li Huang, Wei Huang, Ho-pui Ho*, Compact broadband spectrometer based on upconversion and downconversion luminescence, Optics Letters, 2017, 42(21): 4375-4378. [9] Tao Yang, Xiao-li Huang, Ho-pui Ho*, Cao Xu, Yong-yuan Zhu, Ming-dong Yi, Xin-hui Zhou, Xing-ao Li, Wei Huang, Compact spectrometer based on a frosted glass, IEEE Photonics Technology Letters, 2017, 29(2): 217-220. [10] Tao Yang, Qi Zhang, Yue Hao, Xin-hui Zhou, Ming-dong Yi, Wei Wei, Wei Huang, Xing-ao Li*, Multiple-input multiple-output visible light communication system based on disorder dispersion components, Optical Engineering, 2017, 56(10): 106109. [11] Qing-feng Geng, Hui-juan Guo, Yong-yuan Zhu, Wei Huang, Sen-shen Deng, Tao Yang*, A novel dual-band filter based on single-cavity CTSRR-loaded triangular substrate-integrated waveguide, International Journal of Microwave and Wireless Technologies, 2019,11(9): 894-898. [12] Tao Yang, Yonghong Yan, Yue Zhang, Huijuan Guo, Yongyuan Zhu, Wei Huang*, Single-cavity triangular substrate integrated waveguide bandpass filter with complementary triangular split ring resonator, The Journal of China Universities of Posts and Telecommunications, 2019, 26(5): 94-98. [13] Tao Yang*, Bing Jiang, Jia-cheng Ge, Yong-yuan Zhu, Xing-ao Li, Compact terahertz spectrometer based on disordered rough surfaces, Proc. SPIE, 2018, 10623:10623081-10623088. [14] Tao Yang*, Jing-xiao Peng, Ho-pui Ho, Chun-yuan Song, Xiao-li Huang, Yong-yuan Zhu, Xing-ao Li, Wei Huang, Visible-infrared micro-spectrometer based on a preaggregated silver nanoparticle monolayer film and an infrared sensor card, Proc. SPIE, 2018, 10616:10616101-10616108. [15] Tao Yang*, Bing Jiang, Ho-pui Ho, Yong-yuan Zhu, Wei Huang, THz wave modulator based on the decay of THz surface plasmon along an intrinsic InSb surface, Journal of Physics: Conference Series, 2017, 844(1): 012038. [16] Tao Yang, Ju-sheng Xin*, Xing-ao Li, Wei Huang, Qian-jin Wang, Yong-yuan Zhu, Terahertz surface plasmon on semiconductor and thin dielectric surfaces, Conference on Electron Devices and Solid-State Circuits (EDSSC 2015), Singapore, 2015.6.1-2015.6.4. [17] Tao Yang, Yuan Zhou, Yuan-yi Li, Cao Xu, Wei Huang, Xing-ao Li, Yi-qiang Qin, Yong-yuan Zhu*, Ho-pui Ho*, Computational investigation of THz surface plasmon modulation with optical injection of free carriers, Asia Communications and Photonics Conference (ACP 2014), Shanghai, 2014.11.11- 2014.11.14. [18] Tao Yang, Yuan Zhou, Wei Huang, Yong-yuan Zhu, Ho-pui Ho*, Yi-qiang Qin*, Optical switching of terahertz surface plasmon polaritons propagating on an indium antimonide surface, Opto-electronics and communications conference 2014 (OECC 2014), Melbourne, 2014.7.6-2014.7.10. [19] Tao Yang, Yuan Zhou, Xing-ao Li, Wei Huang, Yi-qiang Qin, Yong-yuan Zhu, Ho-pui Ho*, Optical modulation of terahertz surface plasmon propagated on surfaces of semiconductors, 2015 IEEE International Conference on Electron Devices and Solid-State Circuits (EDSSC 2015), Singapore, 2015.6.1-2015.6.4. [20] Tao Yang, Jia-cheng Ge, Ho-pui Ho, Yong-yuan Zhu, Wei Huang, Compact THz spectrometer based on varying illumination on a rough semiconductor surface, The 13th Pacific Rim Conference on Lasers and Electro-Optics (CLEO-PR 2018), Hong Kong, 2018.7.29-2018.8.3. [21] 杨涛, 葛嘉程, 周源, 黄维*, 基于半导体等离子体频率光学调控的太赫兹波调制系统, 红外与激光工程, 2019, 48(2): 0203005(1-6). 2.近年授权专利:发明人,专利名称,授权时间,专利类别,专利号 [1] 杨涛,黄维,朱永元,李兴鳌,何浩培, 基于散射效应的太赫兹波谱测量装置及其测量方法,2018-11-30,发明,ZL 201610020854.5 [2] 杨涛,黄维,何浩培,朱永元, 基于衍射效应的太赫兹波谱测量装置及其测量方法,2018-3-27,发明,ZL 201610020926.6 [3] 蒋冰,杨涛,黄维,周馨慧,李兴鳌,仪明东,沈骁,何浩培,一种基于滤波效应的太赫兹波谱测量装置,2017-7-7,实用新型,ZL 201621347033.4 [4] 杨涛,黄维,朱永元,何浩培,周馨慧,仪明东,基于干涉效应的太赫兹波谱测量装置及其测量方法,2018-10-19,发明,ZL 201610022137.6 [5] 杨涛,黄小莉,黄维,何浩培,李兴鳌,沈骁,一种宽频光谱仪及其光谱复原方法,2016-08-17,发明,ZL 201510066648.3 [6] 杨涛,许超,何浩培,黄维,李兴鳌,韦玮,仪明东,一种多输入多输出的光通信系统及其信号复原方法,2017-07-18,发明,ZL 201510068163.8 [7] 杨涛,许超,宋春元,何浩培,黄维,李兴鳌,周馨慧,沈骁,仪明东,李咏华,光谱测量装置,2014-08-13,实用新型,ZL 201420139316.4 [8] 杨涛,许超,黄维,周馨慧,李兴鳌,刘亚丽,何浩培,严怀成,基于滤波膜阵列的光谱测量装置及方法,2016-02-03,发明,ZL 201410357523.1 [9] 黄维,周源,杨涛,沈骁,李兴鳌,周馨慧,刘亚丽,何浩培,严怀成,一种太赫兹波的光学调制器件、调制方法及装置,2017-03-22,发明,ZL 201410349829.2 [10] 韦玮,沈骁,杨涛,其他发明人请求不公开姓名,一种级联式增益导引-折射率反导引大模场光纤激光器,2016-08-17,发明,ZL201410159506.7 [11] 杨涛,许超,宋春元,黄维,何浩培,李兴鳌,李咏华,王广婷,一种光谱测量装置及测量方法,2017-01-18,发明,ZL 201410113837.7 [12] 许超,杨涛,蔡祥宝,李兴鳌,周馨慧,仪明东,何浩培,黄维,基于弹光效应的光谱测量装置及光谱测量方法,2015-06-10,发明,ZL 201410001178.8 [13] 杨涛,黄维,许超,仪明东,李兴鳌,周馨慧,何浩培,王义成,基于磁光调制的光谱测量装置及光谱测量方法,2015-10-07,发明,ZL 201410000783.3 [14] 杨涛,黄维,许超,周馨慧,仪明东,李兴鳌,何浩培,刘辉,一种基于电光效应的光谱测量装置及其光谱测量方法,2015-07-15,发明,ZL 201310703202.8 [15] 杨涛,黄维,许超,李兴鳌,周馨慧,仪明东,何浩培,刘辉,一种基于声光效应的光谱测量装置及其光谱测量方法,2015-10-21,发明,ZL 201310706216.5 [16] 杨涛,许超,韦玮,周馨慧,仪明东,何浩培,黄维,一种光谱仪,2015-01-28,发明,ZL 201310092371.2 [17] 杨涛,何浩培,李兴鳌,周馨慧,黄维,基于表面等离子体波的半导体缺陷检测方法,2013-10-30,发明,ZL 201210111269.8 [18] 杨涛,刘湘梅,李伟,许超,何浩培,蔡祥宝,周馨慧,黄维,李兴鳌,一种微型光谱仪,2014-09-10,发明,ZL 201210578653.9 [19] 杨涛,陈宇超,韦玮,李兴鳌,黄维,一种基于变焦透镜的光谱测量方法及微型光谱仪,2014-07-30,发明,ZL 201210475068.6 [20] 杨涛,黄维,李兴鳌,凌安平,何浩培,周馨慧,基于表面等离子体波传输距离的电磁波调制方法,2015-04-01,发明,ZL 201210216220.9 [21] 杨涛,黄维,蔡祥宝,李兴鳌,刘辉,何浩培,周馨慧,王建云,一种半导体等离子体频率测量方法,2014-06-04,发明,ZL 201210216218.1 [22] 杨涛,蒋冰,李兴鳌,黄维,何浩培,周馨慧,基于人工表面等离子体的太赫兹波调制方法、器件及装置, 2017-12-12,发明,ZL 201510062156.7 [23] 杨涛,王源,张岳,李兴鳌,闫永红,黄维,一种基于衍射效应的多输入多输出光通信系统及通信方法,2022.1.25,发明,ZL 201811181073.X [24] 杨涛,张岳,黄维,李兴鳌,何浩培,一种基于滤波效应的多输入多输出光通信系统及通信方法,2021.12.10,发明,ZL 201811422463.1 [25] 杨涛,张岳,黄维,一种基于干涉效应的光通信系统及其信号发送与解码方法,2021.6.4,发明,ZL 201811040486.6 [26] 杨涛,彭靖骁,黄维,何浩培, 基于衍射效应的成像光谱仪及高空间分辨率光谱成像方法,2022.2.8,发明,ZL 201811509516.3 [27] 杨涛,黄维,耿清风,李兴鳌, 基于干涉效应的成像光谱仪及高空间分辨率光谱成像方法,2022.2.11,发明,ZL 201811513996.0 [28] 杨涛,黄维,彭靖骁,何浩培, 基于散射效应的成像光谱仪及高空间分辨率光谱成像方法,2022.2.8,发明,ZL 201811509864.0 [29] 杨涛,黄维,何浩培, 基于滤波效应的成像光谱仪及高空间分辨率光谱成像方法,2022.2.8,发明,ZL 201811509305.X [30] 周馨慧,杨涛,何浩培, 黄维,一种基于散射效应的多输入多输出光通信系统及通信方法,2022.4.12发明,ZL 201811422464.6 [31] 杨涛,黄维,蒋正帅,何浩培, 一种基于衍射效应的成像光谱仪及其超光谱成像方法,2022.3.15,发明,ZL 201811396933.1 [32] 杨涛,黄维,蒋正帅,何浩培, 一种基于散射效应的成像光谱仪及其超光谱成像方法,2021.12.7,发明,ZL 201811396934.6 以上专利转让情况如下: 发生过“权利转移”的专利有:第[5]、[7]、 [17] 、[22]项专利。 发生过“许可备案”的专利有:第[5]、[7]、[8] 、[10] 、[12] 、[13] 、[14] 、[15] 、[16] 、[17] 、[20] 、[21]项专利。 |
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