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贾楠


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贾楠,男,工学博士,讲师,1982年9月生,河南省安阳市人。2005年毕业于郑州大学理学院应用电子专业,获工学学士学位;2008年毕业于中国传媒大学信息工程学院电磁场与微波技术专业,获工学硕士学位;2015年1月毕业于北京交通大学电子信息工程学院通信息与信息系统专业,获工学博士学位。研究方向:高速光传输、基于光纤非线性的全光信号处理、超连续谱及微波光方向。主持并完成国家自然科学青年基金一项,截止目前为止以第一作者或通讯作者发表SCI论文11篇。

研究领域:

高速光传输、超连续谱、非线性光纤光学

一、科研成果

(一)科研论文

1.SCI检索论文

[1] Jian, S. , Nan, J. , Li, T. , & Wang, M. Simultaneous wavelength exchange and 2R regeneration for two optical time division multiplexing signals by a single highly nonlinear fiber. Optical Engineering,56,2017;

[2]孙剑;李唐军;王目光;贾楠;石彦超;王春灿;冯素春;高非线性光纤正常色散区脉冲尾部非频移分量演化,物理学报,68(11),2019;

[3]Nan Jia, HaiTao Yan, Ming Li., Dual-Pulse Pump for Enhancing Supercontinuum Generation [J]. Photonics Journal, IEEE  (Volume:8 ,  Issue: 1 ),Feb. 2016;

[4]贾楠,李唐军,孙剑,钟康平,王目光. 高非线性光纤正常色散区皮秒脉冲泵浦产生超连续谱平坦性研究 [J]. 红外与毫米波学报,2015,34(2):196-202;

[5]Nan Jia, Tangjun Li, Jian Sun, Kangping Zhong, Jing Li, Muguang Wang Simultaneous two-distributary-channel demultiplexing of an OTDM signal using a bidirectionally operated highly nonlinear fiber after 100 km transmission.[J]. Optics & Laser Technology, 2014, 59(1):32-355;

[6]贾楠, 李唐军, 孙剑, 钟康平, 王目光. 双向使用高非线性光纤实现同时解复用出两路10 Gbit/s信号[J]. 物理学报,2014,63 (2): 24201-024201

[7]贾楠, 李唐军, 孙剑, 钟康平, 王目光. 高非线性光纤正常色散区利用皮秒脉冲产生超连续谱的相干特性 [J]. 物理学报, 2014, 63 (8): 84203-084203

[8]Nan Jia, Tangjun Li, Jian Sun, Kangping Zhong, Jing Li, Muguang Wang Simultaneous Clock Enhancing and Demultiplexing for 160 Gb/s OTDM Signal Using Two Bi-directionally Operated Electroabsorption Modulators. [J].IEEEPhotonicTechnologyers,2011,22(7):1615-1617;

[9]Nan Jia, TangJun Li, KangPing Zhong etc. A clock enhanced loop for simultaneous error-free demultiplexing and clock recovery of 160 Gb/s OTDM signal single-channel transmission over 100km.[J]. Chinese physics letters, 2010, 27(11): 114213-114213

[10]Nan Jia, TangJun Li, KangPing Zhong etc. Stable error-free 160 Gb/s OTDM 100-km transmission by high-precision dispersion management. [J]. Chinese Optics Letters, 2010, 8(8): 741-744;

[11]Nan Jia, TangJun Li, KangPing Zhong etc.Suppression intrachannel four wave mixing by strong dispersion management error-free 160 Gb/s OTDM RZ 100-km transmission,ChineseScienceBulletin,2010,56(25):2744-2747

[12]Li, Jing, Nan Jia et al. "Performance analysis of an optical single sideband modulation approach with tunable optical carrier-to-sideband ratio." Optics & Laser Technology48.11(2013):210–215;

[13]KangPing Zhong, TangJun Li, Nan Jia  etc. Temperature independent 80 Gb/s transmission system using spectral phase modulation-based TDC[J]. Chinese Optics Letters, 2012, 10(2):680-685;

[14]J. Li, T. Ning, L. Pei, W. Peng, N. Jia, Q. Zhou, and X. Wen, "Photonic generation of triangular waveform signals by using a dual-parallel Mach-Zehnder modulator," Opt. Lett. 2011, 36, 3828-3830 (2011);

[15]Li Jing, Nan Jia et al. "60 GHz Radio over Fiber Technology for Wireless Access by employing Narrow-Angle PSKModulation."OpticsCommunications284.13(2011):3428–3432

2.EI检索期刊论文

[1] 钟康平,李唐军,孙剑,贾楠,王目光. 基于线性相位插值的增强型载波相位估计算法 [J],光学学报,2013,(09):97-104;

[2]吴婷,李唐军,贾楠,孙剑. 强色散管理抑制160Gb/s光时分复用传输系统中的带内四波混频效应 [J],中国激光,2013,(01):148-153;

[3]池剑锋,李唐军,贾楠,钟康平,王目光,罗定嘉. 高精度色散管理实现160Gb/s光时分复用信号100km稳定无误码传输 [J],中国激光,2011(01):120-125;

[4] 李晶, 宁提纲, 祁春慧,  贾楠. (2009). 基于光学倍乘法产生光毫米波的全双工毫米波光纤传输系统设计. 中国激光, 36(3), 607-613;

3.EI&ISTP检索会议论文

[1]Jian Sun, Tang-jun Li, Nan Jia, et al. Experimental demonstration of 2×80-Gbit/s OTDM multi-channel add-drop multiplexing in a single fiber[C], Proceedings of SPIE Vol. 9279, 927916 (2014);

[2]Zhong K, Li T, Sun J, Jia N et al. Improved Carrier Phase Estimation Algorithm Based on Linear Phase Interpolation[J]. Acta Optica Sinica, 2013, 33(9):0906012-3166

[3] Muguang Wang, Nan Jia, Kangping Zhong, et al. 160 Gb/s OTDM demultiplexing based on two cascaded electro-absorption sampling windows[C], Proceedings of SPIE Vol. 7988, 79881S (2011);

[4] Kangping Zhong, Nan Jia, Tangjun Li, et al. Tunable chromatic dispersion compensating in 40-Gbit/s system by an enhanced thermal chirping fiber Bragg grating[C], Proceedings of SPIE Vol. 7851, 78510R (2010);

[5] Kangping Zhong, Nan Jia, Tangjun Li, et al. A novel simultaneous demultiplexing and clock recovery unit for high speed OTDM system[C], Proceedings of SPIE Vol. 7851, 78510W (2010);

[6] Zhang, Ruoran,Jia, Nan et al. Optimization Scheme For Complete Second-Order Pmd Compensation[C] Optical Internet (COIN), 2010 9th International Conference on2010:1 – 3;

[7] Nan Jia, Tngjun Li, Kangping Zhong. Demonstration of 80 Gbit/s all-optical SOA-based wavelength conversion[C]. 2009 International Conference on Optical Instruments and Technology, Proceedings of SPIE Vol. 7506, 75061D (2009);

[8] Nan Jia, Tngjun Li. Study on the polarization scrambling time for ultra-high-speed optical fiber communication systems[C]. 2009 International Conference on Optical Instruments and Technology, Proceedings of SPIE Vol. 7509, 75091A (2009);

[9] Zhong K, Li T, Jia N. A novel demultiplexer based on SOAs-MZI using couplers of space structure[J]. Proc Spie,International Conference on Optical Instruments and Technology: Optoelectronic Devices and Integration, 75090D (November 24, 2009);

[10] Lu D, Jia N, Zhong K P, et al. Experimental and theory study the system performance of TOAD using for demultiplexing in 160Gb/s OTDM transmission system[C] Communications and Photonics Conference and Exhibition (ACP), 2009 AsiaIEEE, 2009:1 – 7。

(二)科研项目

国家自然科学基金青年基金项目,61605003, 基于光子晶体光纤的超平坦相干超连续谱生成机理研究, 2017/01-2019/12, 20万,已完成,主持。

上一条:张彰元

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