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Zhu Ning Hua
 


Ning Hua Zhu received the B.S., M.S. and Ph.D. degrees in Electronic Engineering from University of Electronic Science and Technology of China, in 1982, 1986, and 1990, respectively.

Ning Hua Zhu received the B.S., M.S. and Ph.D. degrees in Electronic Engineering from University of Electronic Science and Technology of China, in 1982, 1986, and 1990, respectively.

From 1990 to 1994 he worked with the Electronics Department of Zhongshan University, P.R.China, first as a Post-doctoral Fellow, and became an Associate Professor in 1992, and a full Professor in 1994. From 1994 to 1995, he was a Research Fellow in the Department of Electronic Engineering, City University of Hong Kong. From 1996 to 1998, he was with the Siemens Corporate Technology, Munich, Germany as a Guest Scientist (Humboldt Research Fellow), where he worked on the microwave design and testing of external waveguide modulators and laser modules. He is currently a Professor with the Institute of Semiconductors, Chinese Academy of Sciences, Beijing. In 1998 he was involved in the Hundred-Talent Program, Chinese Academy of Sciences. He was selected by the National Natural Science Foundation as a Distinguished Young Scientist in 1998. He founded a Joint Photonics Research Laboratory between the Institute of semiconductors, CAS and City University of Hong Kong in 1998, and served as deputy Director.

His research interests are in modeling and characterization of integrated optical waveguides and coplanar transmission lines, optimal design and testing of optoelectronics devices, microwave photonics, photonic integration circuits and optical fiber communications. His research work is supported by the National Natural Science Foundation,the National High Technology Development Program (863), and the Major State Basic Research Program. He is the principal investigator of a) NSFC Science Fund for Creative Research Group “Semiconductor Integrated Optoelectronic Devices” (6M RMB); b) NSFC Key project “Basic research on high-speed semiconductor integrated optoelectronic devices” (10M RMB); c) 863 project “Photonic Integration Technology and Its System Applications” (80M RMB). He has authored ro co authored over 155 journal articles and two books and three book chapters.

Selected Publications:
1. N.H.Zhu, J.W.Man, H.G.Zhang, J.H.Ke, W.Han, W.Chen, Y.Liu, X.Wang, H.Q.Yuan, and L.Xie, “Lineshape analysis of the beat signal between optical carrier and delayed sidebands,” IEEE J. Quantum Electron., vol.46, no.3, pp.347-353, March, 2010.
2. N.H.Zhu, J.H.Ke, H.G.Zhang, W.Chen, L.J.Zhao, and W.Wang, “Wavelength coded optical time-domain reflectometry,” J. Lightwave Tech.,vol.28, no.6, pp.972-977, March, 2010.
3. N.H.Zhu, G.Z.Xu, W.Hofmann, W.Chen, G.Böhm, Y.Liu, X.Wang, L.Xie, and M.C. Amann, “Small-signal equivalent circuit model and characterization of 1.55 m InGaAlAs/InP VCSELs,” IEEE Trans. Microwave Theory Tech. vol.58, no.5, 1283-1289, 2010.
4. N.H.Zhu, H.G.Zhang, J.W.Man, H.L.Zhu, J.H.Ke, Y.Liu, X.Wang, H.Q.Yuan, L.Xie, and W.Wang, “Microwave generation in an electro-absorption modulator integrated with a DFB laser subject to optical injection,” Optics Express, vol. 17, no. 24 pp.22114-22123, Nov. 2009.
5. N.H.Zhu, W.Li, L.X.Wang, S.F.Chen, J.H.Ke, Y.L.Zhang, J.M.Wen, Y.Liu, X.Wang, H.Q.Yan, and L.Xie “Study on frequency coherence properties of light beams,” IEEE J. Quantum Electron., vol.45, no.5, pp.514-522, May, 2009.
6. N.H.Zhu, Q.Q.G.Hasen, H.G. Zhang, J.M.Wen, and L.Xie, “Dynamic P-I and P-V curves for semiconductor lasers and modulators,” IEEE J. Lightwave Tech., vol.26, no.19, pp.3369-3375, Oct. 1, 2008.
7. N.H.Zhu, W.Li, W. Han, W.Chen, J.M.Wen, and L.Xie, “Enhanced modulation bandwidth of a Fabry-Perot semiconductor laser subject to light injection from another Fabry-Perot laser,” IEEE J. Quantum Electron., vol.44, no.6, pp.528-534, 2008.
8. N.H.Zhu, J.M.Wen, W.Chen, and L.Xie “Hyperfine spectral structure of semiconductor lasers,” Physical Review A, 76, 063821, 2007
9. N.H.Zhu, G.H.Hou, H.P.Huang, G.Z.Xu, T.Zhang, Y.Liu, H.L.Zhu, L.J.Zhao, and W.Wang, “Electrical and optical coupling in an electro-absorption modulator integrated with a DFB laser,” IEEE J. Quantum Electron., vol.43, no.7, pp.535-544, 2007.
10.N.H.Zhu, J.M.Wen, H.S.San, H.P.Huang, L.J.Zhao, and W.Wang, "Improved optical heterodyne methods for measuring frequency responses of photodetectors," IEEE J. Quantum Electron., vol.42, no.3, pp.241-248, 2006.