江蘇師范大學(xué)物電學(xué)院導(dǎo)師:趙鷺明

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江蘇師范大學(xué)物電學(xué)院導(dǎo)師:趙鷺明

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江蘇師范大學(xué)物電學(xué)院導(dǎo)師:趙鷺明 正文


趙鷺明 ,男,校特聘教授。本碩連讀于1999年獲清華大學(xué)本科學(xué)位、2002年獲清華大學(xué)碩士學(xué)位,2007年獲新加坡南洋理工大學(xué)博士學(xué)位。2006年至2008年在新加坡南洋理工大學(xué)電機(jī)與電子工程學(xué)院任博士后研究助理和博士后研究員;2008年7月至11月香港理工大學(xué)電子及資訊工程學(xué)系從事博士后研究工作;2008年12月至2010年11月獲“新加坡千禧年學(xué)者”稱號,在新加坡南洋理工大學(xué)電機(jī)與電子工程學(xué)院任博士后研究員;2010年至2012年在美國康奈爾大學(xué)應(yīng)用與工程物理學(xué)院從事博士后研究工作。2013年加入江蘇師范大學(xué)物理與電子學(xué)院。
主要從事光纖鎖模激光器及相關(guān)技術(shù)、光孤子動力學(xué)、光纖放大器及相關(guān)技術(shù)和非線性光學(xué)方面的研究工作。共發(fā)表學(xué)術(shù)論文70余篇,其中SCI論文70篇,SCI他引超過千次,H因子19。2010年5月起為國際電氣與電子工程師協(xié)會高級會員(IEEE Senior member)。

部分已發(fā)表論文:

1. L. J. Kong, L. M. Zhao, S. Lefrancois, D. G. Ouzounov, C. X. Yang, and F. W. Wise, “Generation of megawatt peak power picoseconds pulses from a divided-pulse fiber amplifier,” Optics Letters,37,253-255 (2012).
2. L. M. Zhao, D. Y. Tang, H. Zhang, X. Wu, Qiaoliang Bao, and Kian Ping Loh, “Dissipative soliton operation of an ytterbium-doped fiber laser mode locked with atomic multi-layer graphene,” Optics Letters, 35, 3622-3624 (2010).
3. L. M. Zhao, D. Y. Tang, X. Wu, and H. Zhang, “Dissipative soliton generation in an Yb-fiber laser with an invisible intra cavity bandpass filter,” Optics Letters, 35, 2756-2758 (2010).
4. L. M. Zhao, D. Y. Tang, X. Wu, and H. Zhang, “Dissipative soliton trapping in fiber lasers of normal dispersion,” Optics Letters, 35, 1902-1904 (2010).
5. L. M. Zhao, D. Y. Tang, and D. Liu, “Ultrahigh-repetition-rate bound-soliton fiber laser,” Applied Physics B: Lasers and Optics, 99, 441-447 (2010).
6. L. M. Zhao, D. Y. Tang, X. Wu, H. Zhang, C. Lu, and H. Y. Tam, “Observation of dip-type sidebands in a soliton fiber laser,” Optics Communications, 283, 340-343 (2010).
7. H. Zhang, D. Y. Tang, L. M. Zhao, and X. Wu, “Dual-wavelength domain wall solitons in a fiber ring laser,” Optics Express, 19, 3525-3530(2010).
8. X. Wu, D. Y. Tang, L. M. Zhao, and H. Zhang, “Mode-Locking of Fiber Lasers Induced by Residual Polarization Dependent Loss of Cavity Components,” Laser Physics, 20, 1913-1917 (2010).
9. H. Zhang, D. Y. Tang, L. M. Zhao, Q. L. Bao, K. P. Loh, B. Lin, and S. C. Tjin, “Compact graphene mode-locked wavelength-tunable erbium-doped fiber lasers: from all anomalous dispersion to all normal dispersion,” Laser Physics Letters, 7, 591-596 (2010).
10.Han Zhang, Dingyuan Tang, Luming Zhao, Qiaoliang Bao, Kian Ping Loh, “Vector Dissipative Solitons in Graphene Mode Locked Fiber Lasers,” Optics Communications, 283, 3334-3338 (2010).
11.Zhang, H.; Tang, D.; Knize, R. J.; Zhao, L.; Bao, Q.; Loh, K. P. Graphene mode locked, wavelength-tunable, dissipative soliton fiber laser. Appl. Phys. Lett. 96, 111112 (2010).
12.H. Zhang, D. Y. Tang,L. M. Zhao, and R. J. Knize, "Vector dark domain wall solitons in a fiber ring laser," Opt. Express 18, 4428-4433 (2010)
13.L. M. Zhao, D. Y. Tang, X. Wu, H. Zhang, H. Y. Tam, “Coexistence of polarization-locked and polarization-rotating vector solitons in a fiber laser with SESAM,” Optics Letters, 34, 3059-3061 (2009).
14.L. M. Zhao, C. Lu, H. Y. Tam, P. K. A. Wai, and D. Y. Tang, “Gain dispersion for dissipative soliton generation in all-normal-dispersion fiber lasers,” Applied Optics, 48, 5131-5137 (2009).
15.D. Y. Tang, L. M. Zhao, X. Wu, and H. Zhang, “Soliton modulation instability in fiber lasers,” Phys. Rev. A, 80, 023806 (2009) --- selected for the September 2009 issue of Virtual Journal of Ultrafast Science.
16.L. M. Zhao, D. Y. Tang, T. H. Cheng, C. Lu, H. Y. Tam, X. Q. Fu, and S. C. Wen, “Passive harmonic mode locking of soliton bunches in a fiber ring laser,” Optical and Quantum Electronics, 40, 1053-1064 (2009).
17.L. M. Zhao, D. Y. Tang, H. Zhang, X. Wu, “Bunch of restless vector solitons in a fiber laser with SESAM,” Optics Express, 17, 8103-8108 (2009).
18.L. M. Zhao, C. Lu, H. Y. Tam, P. K. A. Wai, and D. Y. Tang, “High fundamental repetition rate fiber lasers operated in strong normal dispersion regime,” IEEE Photonics Technology Letters, 21, 724-726 (2009).
19.L. M. Zhao, C. Lu, H. Y. Tam, D. Y. Tang, L. Xia, and P. Shum, “Observation of spectral enhancement in a soliton fiber laser with fiber Bragg grating,” Optics Express 17, 3508-3513 (2009).
20.Han Zhang, Qiaoliang Bao, Dingyuan Tang, Luming Zhao, and Kianping Loh, “Large-energy soliton erbium-doped fiber laser with a graphene-polymer composite mode locker,” Applied Physics Letters, 95, 141103 (2009).
21.H. Zhang, D. Y. Tang, L. M. Zhao, and X. Wu, “Dark pulse emission of a fiber laser,” Physical Review A, 80, 045803 (2009).
22.Khurram Karim Qureshi, X. H. Feng, L. M. Zhao, H. Y. Tam, C. Lu, and P. K. A. Wai, "C-band single-longitudinal mode lanthanum co-doped bismuth based erbium doped fiber ring laser," Opt. Express 17, 16352-16357 (2009).
23.H. Zhang, D. Y. Tang, L. M. Zhao, Q. L. Bao, and K. P. Loh, "Large energy mode locking of an erbium-doped fiber laser with atomic layer graphene," Opt. Express 17, 17630-17635 (2009).
24.H. Zhang, D. Y. Tang, X. Wu, and L. M. Zhao, "Multi-wavelength dissipative soliton operation of an erbium-doped fiber laser," Opt. Express 17, 12692-12697 (2009)
25.H. Zhang, D. Y. Tang, L. M. Zhao, and X. Wu, “Observation of polarization domain wall solitons in weakly birefringent cavity fiber lasers,” Phys. Rev. B, 80, 052302 (2009).
26.X. Wu, D. Y. Tang, L. M. Zhao, and H. Zhang, “Effective cavity dispersion shift induced by nonlinearity in a fiber laser,” Phys. Rev. A 80,013804 (2009).
27.X. Wu, D. Y. Tang, H. Zhang, and L. M. Zhao, “Dissipative soliton resonance in an all-normal-dispersion erbium-doped fiber laser,” Optics Express 17, 5580-5584 (2009).
28.H. Zhang, D. Y. Tang, L. M. Zhao, X. Wu, and H. Y. Tam, "Dissipative vector solitons in a dispersion-managed cavity fiber laser with net positive cavity dispersion," Opt. Express 17, 455-460 (2009).

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