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北京交通大学电子信息工程学院导师教师师资介绍简介-任国斌

本站小编 Free考研考试/2020-05-08

个人简介
基本情况姓名:
任国斌

职务:


职称:
教授

学历:
研究生

学位:
博士

通信地址:
北京交通大学 光波所

邮编:
100044

办公电话:
**

电子邮箱:
gbren@bjtu.edu.cn


教育背景 2005年4月毕业于北京交通大学通信与信息系统专业,并获工学博士学位。2006年至2008年于新加坡南洋理工大学做博士后研究工作。现为北京交通大学教授,博士生导师。
主要从事光纤通信领域光电子学,光纤光学,光波导,特种光纤及光子晶体光纤的理论研究与设计,以及特种光纤的制造工艺研究。参与、主持多项包括国家863、国家自然科学基金等项目。近年来,在美国光学学会(OSA)、美国电气电子工程师学会(IEEE)主办的国际权威学术期刊、学术会议发表论文100余篇。



工作经历


研究方向 电磁场与微波技术
电子与通信工程(专业学位)
全光交换、特种光纤及器件



招生专业 电子科学与技术硕士
电子与通信工程硕士
信息与通信工程硕士



科研项目 国家自然科学基金“面上”:光纤热极化的理论和实验研究,2012-01-01--2015-12-31,主持
国家自然科学基金“面上”:高效提升拉曼散射反Stokes 效率的新型光纤及大面积有源光纤的研制,2013-01-01--2016-12-31,参加
人才基金:光纤热极化的动力学研究,2011-11-30--2013-12-31,主持



教学工作 主讲本科生课程:光纤通信技术基础
主讲研究生课程:新型光电子与光纤器件



论文/期刊
Lin Huang, Honglin An, Juliano G. Hayashi, Guobin Ren, Alessio Stefani, and Simon Fleming, "Thermal poling of multi-wire array optical fiber," Opt. Express 26, 674-679 (2018).
Yuean Mi, Guobin Ren, et al.,"Vector mode conversion based on tilted fiber Bragg grating in ring-core fibers," Optics Communications, 410, 930-935 (2018).
Lin Huang, Guobin Ren, et al., "Second-harmonic generation of second-order modes in thermally poled double-anode optical fibers," J. Opt. Soc. Am. B 34, 2640-2644 (2017)
Yuean Mi, Haisu Li, and Guobin Ren, "Vector mode conversion based on an asymmetric fiber Bragg grating in few-mode fibers," Appl. Opt. 56, 7305-7310 (2017)
Yao Xu, Guobin Ren, et al., "Bending effect characterization of individual higher-order modes in few-mode fibers," Opt. Lett. 42, 3343-3346 (2017)
Lin Huang, Honglin An, Guobin Ren, and Simon Fleming, "Simulating the space-charge field formation in thermally poled optical fibers: a new two-rate model for hydrogenated cations," Opt. Lett. 42, 819-822 (2017)
Haisu Li, Guobin Ren, et al., "Guiding terahertz orbital angular momentum beams in multimode Kagome hollow-core fibers," Opt. Lett. 42, 179-182 (2017)
Bofeng Zhu, Guobin Ren, et al., "Strong light confinement and gradient force in a hexagonal boron nitride slot waveguide," Opt. Lett. 41, 4991-4994 (2016)
Haisu Li, Guobin Ren, et al., "Linearly polarized single TM mode terahertz waveguide," Opt. Lett. 41, 4004-4007 (2016)
Haisu Li, Guobin Ren, et al., "Broadband orbital angular momentum transmission using a hollow-core photonic bandgap fiber," Opt. Lett. 41, 3591-3594 (2016)
Youchao Jiang, Guobin Ren, et al., "Tunable orbital angular momentum generation in optical fibers," Opt. Lett. 41, 3535-3538 (2016)
B. Zhu, G. Ren, et al., "Directional Excitation of Plasmons on Dual- Functional Graphene-Coated Dielectric Gratings," IEEE Photonics Technology Letters, vol. 28, no. 14, pp. 1549-1552, July15, 15 2016.
Xingjuan Zheng, Guobin Ren, et al, "Bending losses of trench-assisted few-mode optical fibers," Appl. Opt. 55, 2639-2648 2016.
Zheng Xing-Juan, Ren Guo-Bin, et al., "Study on bending losses of few-mode optical fibers. Acta Physica Sinica, " 65 (6): 64208-064208 2016.
Wenxing Jin, Guobin Ren, Wei Jian, et al., "Strict dual-mode large-mode-area fiber with multicore structure," Optics Communications, Volume 366, 1, Pages 308-313 2016.
Y. Gao, G. Ren, et al., "Nanomechanical Plasmonic Filter Based on Grating-Assisted Gap Plasmon Waveguide," Photonics Technology Letters, IEEE, vol.28, no.3, pp.331-334, Feb.1, 1 2016.
Y. Gao, G. Ren, et al., "Tunable Plasmonic Filter Based on Graphene Split-Ring," Plasmonics, 11(1): 291-296. 2016.

Bofeng Zhu, Guobin Ren,Martin J. Cryan, Yixiao Gao, Yang Yang, Beilei Wu, Yudong Lian, and ShuishengJian, "Magnetically tunable non-reciprocal plasmons resonator based ongraphene-coated nanowire," Opt. Mater. Express 5, 2174-2183 (2015).
Bofeng Zhu, Guobin Ren,Yixiao Gao, Beilei Wu, Chenglong Wan, and Shuisheng Jian, "Graphenecircular polarization analyzer based on spiral metal triangle antennasarrays," Opt. Express 23, 24730-24737 (2015).
Lin Huang, Guobin Ren, YixiaoGao, Bofeng Zhu, and Xiaomeng Sun, "Hindering effect of the core–claddinginterface in thermally poled optical fibers," Appl. Opt. 54, 5771-5776(2015).
Bofeng Zhu, Guobin Ren,Yixiao Gao, Beilei Wu, Qiaoyi Wang, Chenglong Wan, and Shuisheng Jian,"Graphene plasmons isolator based on non-reciprocal coupling," Opt.Express 23, 16071-16083 (2015).
Li, H.; Ren, G.; Gao, Y.;Lian, Y.; Cao, M.; Jian, S., "Particle Swarm Optimization of Single-ModeTrench-Assisted Bend-Insensitive Fibers," Photonics Technology Letters,IEEE, 27(12), 1293-1296, 2015.
Haisu Li, Guobin Ren, BinYin, Yudong Lian, Yunlong Bai, Wei Jian, Shuisheng Jian, "Modeling andoptimized design of a parabolic-profile single-mode fiber with ultra-lowbending loss and large-mode-area, " Optics Communications, 352, 84-90 2015.
B. Zhu, G. Ren, Y. Gao, Y.Yang, B. Wu, Y. Lian, et al., "Spatial Splitting and Coupling of the EdgeModes in the Graphene Bend Waveguide," Plasmonics 10(3): 745-751. 2015.
Bofeng Zhu, Guobin Ren,Yixiao Gao, Yang Yang, Beilei Wu, Yudong Lian, and Shuisheng Jian,"Nanofocusing in the graphene-coated tapered nanowire infraredprobe," J. Opt. Soc. Am. B 32, 955-960 (2015).
Huang, L.; Ren, G.; Gao, Y.;Zhu, B.; Peng, W., "Design of Thermally Poled Twin-Core Fiber Coupler WithElectrical Tunability," Photonics Technology Letters, IEEE, 27(8),.919-922, 2015.
Lin Huang, Guobin Ren. Singlepolarization and poling optimized twin-hole optical fiber[J]. Chinese OpticsLetters, 2015, 13(s1): S10603
Huaiqing Liu, Yixiao Gao, Bofeng Zhu, Guobin Ren, Shuisheng Jian, “A T-shaped high resolution plasmonicdemultiplexer based on perturbations of two nanoresonators,” OpticsCommunications, Volume 334, 1 Pages 164-169 (2015).
Yixiao Gao, Guobin Ren,Bofeng Zhu, Jing Wang, and Shuisheng Jian, "Single-mode graphene-coatednanowire plasmonic waveguide," Opt. Lett. 39, 5909-5912 (2014)
L Liang, G Ren, B Yin, WPeng, X Liang, S Jian, "Refractive Index and Temperature Sensor Based onFiber Ring Laser With STCS Fiber Structure," Photonics Technology Letters,IEEE , vol.26, no.21, pp.2201,2204 (2014).
Yixiao Gao, Guobin Ren,Bofeng Zhu, Huaiqing Liu, Yudong Lian, and Shuisheng Jian, "Analyticalmodel for plasmon modes in graphene-coated nanowire," Opt. Express 22,24322-24331 (2014).
Bofeng Zhu, Guobin Ren,Yixiao Gao, Yang Yang, Yudong Lian, and Shuisheng Jian, "Graphene-coatedtapered nanowire infrared probe: a comparison with metal-coated probes,"Opt. Express 22, 24096-24103 (2014).
Lin Huang, Guobin Ren, BofengZhu, Xiaomeng Sun, “Study on polarization properties of twin-hole polingoptical fibers,” Optics Communications, Volume 328, 1, Pages 1-7 (2014).
ZhenLin, Guobin Ren, Siwen Zheng, WeiJian, and Shuisheng Jian, "Analytic solution of cut-off wavelength ofbend-insensitive fibers based on frustrated total reflection," Appl. Opt. 53, 1110-1117 (2014)
Siwen Zheng, Guobin Ren, Zhen Lin, Wei Jian,Shuisheng Jian, “Design and analysis of novel multilayer-core fiber with largemode area and low bending loss,” Opt.Comm., Volume 315, 15 March 2014, Pages 317-323.http://dx.doi.org/10.1016/j.optcom.2013.11.042.
ZhangZiyang, Ren Guobin, ZhouDing’an, WuJialiang. Study on Bending Losses of Trench-Assisted Single Mode OpticalFiber[J]. Laser & OptoelectronicsProgress, 2014, 51(2): 020605.
Zhen Lin, Guobin Ren, Siwen Zheng, Bofeng Zhu, Wanjing Peng, Shuisheng Jian,"Switchable multi-wavelength fiber laser based on cascade fiber tapers andphase modulator," 2013 International Conference on Photonics &Optoelectronics Technology and Engineering (POTE 2013), Nov. 2013, Beijing,China.
Zheng Siwen, Ren Guobin, Lin Zhen, Jian Wei, JianShuisheng. Influence of Trench Parameters on the Characteristic ofTrench-Assisted Multi-Core Fiber[J]. ActaOptica Sinica, 2013, 33(10): **
ZhenLin, Guobin Ren, Siwen Zheng, WeiJian, Jingjing Zheng, and Shuisheng Jian, "Analysis and characterizationof Er–Yb codoped-depressed inner cladding fiber," Appl. Opt. 52, 5856-5861 (2013).
BofengZhu, Guobin Ren,Siwen Zheng,Zhen Lin,Shuisheng Jian, “Tunable absorption in a dielectric-graphene-metal groove-gratingabsorber,” Opt. Comm., Volume 308, 1November 2013, Pages 204-210.
BofengZhu, Guobin Ren, Siwen Zheng, ZhenLin, and Shuisheng Jian, "Nanoscale dielectric-graphene-dielectric tunableinfrared waveguide with ultrahigh refractive indices," Opt. Express 21, 17089-17096 (2013).
SiwenZheng, Guobin Ren, Zhen Lin, andShuisheng Jian, "Mode-coupling analysis and trench design forlarge-mode-area low-cross-talk multicore fiber," Appl. Opt. 52, 4541-4548 (2013).
SiwenZheng, Guobin Ren, Zhen Lin, WeiJian, Shuisheng Jian, “A novel four-air-hole multicore dual-modelarge-mode-area fiber: Proposal and design,” Optical Fiber Technology, Volume 19,Issue 5, October 2013, Pages 419-427.
ZhenLin, Guobin Ren, Siwen Zheng,Shuisheng Jian, “Wide-band dual-mode operation of multi-core fiberswith air-hole structure,” Optics &Laser Technology, Volume 51, October 2013, Pages 11-16.
G. Ren, Z. Lin, S.Zheng, and S. Jian, "Resonant coupling in trenchedbend-insensitive optical fiber," Opt.Lett. 38, 781-783 (2013).
LinZhen, ZhengSi-Wen, Ren Guo-Bin etal. “Characterizationand comparison of 7-core and 19-core large-mode-area few-mode fibers,” Acta Phys. Sin., 2013, 62(6): 064214.
ZhengSi-Wen, LinZhen, RenGuo-Bin et al. “Design and analysis of novel multi-coredual-mode large-mode-area optical fiber,” Acta Phys. Sin.,2013, 62(4): 044224.
D.Yong, X.Yu, G. Ren, H.Zhang, Y.Zhang, etal. “PhotonicBandgap Fiber for Infiltration-Free. Refractive-Index Sensing,” IEEE J SEL TOP QUANT. 18(5), 1560-1565 (2012).
ZhangPengcheng, Ren Guobin, “Optimizationand Design of Composite Terahertz Achromatic Wave Plate [J].” Chinese Journal of Lasers, 2012, 39(1):**.
G.Ren, Y. Wang, Y. Gong, “Composite waveguide for THzdifference frequency generation,” 2011Symposium on Photonics and Optoelectronics (SOPO 2011), Wuhan, China, 2011.
G.Ren, P. Zhang, “Design of achromatic terahertz quarter wave plateby simulated annealing algorithm,” IETConference Publications, v 2011, n 585 CP, 2011, International Conference onAdvanced Infocomm Technology 2011, ICAIT 2011.
Y.Gong, G.Ren, H. Dong, J. Teng, “A novel fiber-based Terahertz source,” IRMMW-THz 2010 - 35th InternationalConference on Infrared, Millimeter, and Terahertz Waves, Conference Guide, 2010.
G. H. Wang, P. Shum, G. B. Ren, X. Yu, J. J. Hu, and C. Lin, "Theoreticalinvestigation of nanowaveguide-based optical coupler using mode expansion transfermatrix," Microwave and OpticalTechnology Letters, vol. 52, pp. 1123-1129, 2010
G.Ren, Y. Gong, P. Shum, X. Yu, J. Hu, "Polarization Maintaining Air-core Bandgap Fibers for Terahertz WaveGuiding," IEEE J . Quant. Elect.,2009, 45(5): 506-513.
G.Ren, P. Shum, J. Hu, X. Yu, Y. Gong, “PolarizationDependent Bandgap Splitting and Mode Guiding in Liquid Crystal Photonic BandgapFibers”, J. Lightw. Technol., 2008,26(22): 3650-3659.
G.Ren, Y. Gong, P. Shum, X. Yu, J. Hu, G. Wang, M. OngLing Chuen, and V. Paulose, "Low-loss air-core polarization maintainingterahertz fiber," Opt. Express,2008, 16(18): 13593-13598.
G.Ren, P. Shum, J. Hu, X. Yu, Y. Gong, “Study ofPolarization-Dependent Bandgap Formation in Liquid Crystal Filled PhotonicCrystal Fibers”, IEEE Photo. Technol.Lett., 2008, 20(8): 602-604.
G.Ren, P. Shum, X. Yu, J. Hu, G. Wang, Y. Gong, “Polarizationdependent guiding in liquid crystal filled photonic bandgap fibers”, Opt. Comm., 2008, 281(6): 1598-1606.
G.Ren, Y. Gong, P. Shum, X. Yu, J. Hu, “PolarizationMaintaining Air-core Fiber for Terahertz Guiding”, P.1.18, 34th EuropeanConference and Exhibition on Optical Communication, 21-25 September 2008,Brussels, Belgium, ECOC2008.
G.Ren, P. Shum, X. Yu, J, Hu, Y. Gong, “Bandgap splittingin liquid crystal photonic bandgap fibers,” The Optical Fiber CommunicationConference and Exposition (OFC) and The National Fiber Optic EngineersConference (NFOEC) 2008, San Diego, California, USA.
G.Ren, P. Shum, L. Zhang, X. Yu, W. Tong, and J. Luo,"Low-loss all-solid photonic bandgap fiber," Opt. Lett., 2007, 32(9): 1023-1025.
G.Ren, P. Shum, J. Hu, X. Yu, and Y. Gong,"Fabrication of all-solid photonic bandgap fiber coupler," Opt. Lett., 2007. 32(21): 3059-3061.
G.Ren, P. Shum, L. Zhang, M. Yan, X. Yu, W. Tong, and J.Luo, “Design of all-solid bandgap fiber with improved confinement and bendlosses,” IEEE Photo. Technol. Lett.,2006, 18(24): 2560-2562.




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