論文專著:
出版專著:
1、《光纖偏振模色散原理、測量與自適應(yīng)補償》,張曉光*; 唐先鋒,北京: 北京郵電大學(xué)出版社 , 147千字, 2017.
2、《大學(xué)物理雙語教學(xué)課程解題指導(dǎo)書》(第二版),張曉光; 蘆鵬飛; 席麗霞; 韓利紅; 張勇,北京: 北京郵電大學(xué)出版社 , 2015.
3、《光學(xué)》,第4版,[印度]伽塔克(中譯本),張曉光、席麗霞、余和軍,清華大學(xué)出版社, 2013.
4、 《大學(xué)物理》, 張曉光,北京郵電大學(xué)出版社, 1995 年。
5、 《非線性光學(xué)—原理及在光通信中的應(yīng)用》,張曉光、俞重遠(yuǎn),電子工業(yè)出版社出版。
發(fā)表英文期刊論文:
[1]張虎*; 張曉光; 張文博.Effects of the Intramode-Group Coupling Induced by the Elliptical Deformation of Orbital Angular Momentum Fibers.IEEE Photonics Journal, 2022, 14(1): 7200309.
[2]Yang, Lishan; Xu, Hengying*; Bai, Chenglin*; Yu, Xinkuo; You, Kangyoung; Sun, Weibin; Zhang, Xiaoguang; Liu, Cailong. Low-complexity modulation format identification scheme via graph-theory in digital coherent optical receivers
Optics Communications, 2021, 501: 127380.
[3]Cui, Nan; Zhang, Xiaoguang; Zhang, Qi; Zhang, Xulun.Narrow- or wide-band channel for a high baud rate fiber communication system: a judgment based on a temporal and spectral evolution PMD model.Optics Express, 2021, 29(23): 38497-38511.
[4]Hu, Leiya; Zhang, Qi; Li, Xue; Cui, Nan; Zhang, Nannan; Zhang, Xiaoguang*; Xi, Lixia.Joint equalization of CD and RSOP using a time-frequency domain Kalman filter structure in Kramers-Kronig system.Optics Communications, 2021, 498: 127214.
[5]Yang, Jingxuan*; Li, Wei*; Zhang, Hu; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.Modeling of the twist-induced effect in circular photonic crystal fiber transmitting orbital angular momentum modes.Results in Physics, 2021, 28: 104626.
[6]Zhang, Xulun; Xi, Lixia*; Wei, Jiacheng; Du, Shucheng; Zhang, Wenbo; Li, Jianping; Zhang, Xiaoguang.Nonlinear frequency domain PMD modeling and equalization for nonlinear frequency division multiplexing transmission.Optics Express, 2021, 29(18): 28190-28201.
[7]Wei, Jiacheng; Xi, Lixia*; Zhang, Xulun; Deng, Jiayun; Du, Shucheng; Zhang, Xiaoguang; Zhang, Wenbo; Xiao, Xiaosheng.Probabilistic shaping and neural network-based optimization for a nonlinear frequency division multiplexing system.Optics Letters, 2021, 46(15): 3697-3700.
[8]Yang, Jingxuan; Zhang, Hu*; Zhang, Xiaoguang; Chen, Ze; Xi, Lixia; Zhang, Wenbo.A hollow-core circular photonic crystal fiber mode selective coupler for generating orbital angular momentum modes.Optical Fiber Technology, 2021, 64: 102543.
[9]崔楠; 張曉光*.Fast tracking of polarization impairments using DSP algorithms in fiber for a coherent optical communication system.Microwave and Optical Technology Letters, 2021, 63(13).
[10]Liu, Le; Tang, Xianfeng*; Jiang, Xin; Xu, Zeyu; Li, Fan; Li, Zibin; Huang, Hongbing; Ni, Pengcheng; Chen, Longyong; Xi, Lixia; Zhang, Xiaoguang.Physical layer encryption scheme based on cellular automata and DNA encoding by hyper-chaos in a CO-OFDM system.Optics Express, 2021, 29(12): 18976-18987.
[11]Li, Xuan; Xi, Lixia*; Zhang, Yang 'an; Yuan, Xueguang; Zhang, Xiaoguang.Application of the joint algorithm of smooth pseudo Wigner-Ville distribution and four-parameter particle swarm optimization to BOTDR.Results in Physics, 2021, 25: 104215.
[12]Yang, Lishan; Xu, Hengying*; Bai, Chenglin*; Yu, Xinkuo; You, Kangyoung; Sun, Weibin; Guo, Jiuhong; Zhang, Xiaoguang; Liu, Cailong.Modulation Format Identification Using Graph-Based 2D Stokes Plane Analysis for Elastic Optical Network.IEEE Photonics Journal, 2021, 13(1).
[13]Wang, Dongfei; Xi, Lixia; Tang, Xianfeng*; Zhang, Xiaoguang; Gao, Na.A simple photonic precoding-less scheme for vector millimeter-wave signal generation based on a single phase modulator.Results in Physics, 2020, 19: 103412.
[14]Wang, Dongfei; Tang, Xianfeng; Xi, Lixia*; Zhang, Xiaoguang; Zhang, Wenbo; Zhang, Hu.A scheme to generate 16QAM-OFDM vector mm-wave signal based on a single MZM without optical filter and precoding.Optics Communications, 2020, 475: 126227.
[15]Chen, Ze; Zhang, Hu*; Zhang, Xiaoguang; Li, Hui; Yang, Jingxuan; Zhang, Wenbo; Xi, Lixia; Tang, Xianfeng.Symmetric spin splitting of elliptically polarized vortex beams reflected at air-gold interface via pseudo-Brewster angle.Optics Express, 2020, 28(20): 29529-29539.
[16]Xu, Hengying; Yang, Lishan; Yu, Xinkuo; Zheng, Zibo; Bai, Chenglin*; Sun, Weibin; Zhang, Xiaoguang. Blind and low-complexity modulation format identification scheme using principal component analysis of Stokes parameters for elastic optical networks.Optics Express, 2020, 28(14): 20249-20263.
[17]Wang, Dongfei; Xi, Lixia; Tang, Xianfeng*; Zhang, Xiaoguang; Zhang, Wenbo; Tu, Mingliang; Ding, Min; Zhao, Jia; Jiang, Xin.Photonic filterless scheme to generate V -band OFDM vector mm -wave signal without precoding.Optics Communications, 2020, 466: 125663.
[18]Yang, Zhenshan*; Zhang, Xiaoguang; Zhang, Bin; Zhang, Xia; Zhang, Zhentao; Meng, Xiangguo; Bai, Chenglin.Density-matrix formalism for modal coupling and dispersion in mode-division multiplexing communications systems.Optics Express, 2020, 28(13): 18658-18680.
[19]Wu, Yue; Xi, Lixia*; Zhang, Xulun; Zheng, Zibo; Wei, Jiacheng; Du, Shucheng; Zhang, Wenbo; Zhang, Xiaoguang.Robust neural network receiver for multiple-eigenvalue modulated nonlinear frequency division multiplexing system.Optics Express, 2020, 28(12): 18304-18316.
[20]Cui, Nan; Zhang, Xiaoguang*; Zhang, Wenbo; Tang, Xianfeng; Xi, Lixia.True Equalization of Polarization-Dependent Loss in Presence of Fast Rotation of SOP.Applied Sciences-Basel, 2020, 10(11): 3844.
[21]Zhang, Bin; Zhang, Xia; Zhang, Xiaoguang; Yang, Zhenshan*; Bai, Chenglin*; Zhang, Hu; Li, Hui; Cao, Minghua.Theory for mode coupling in perturbed fibers.Optics Communications, 2020, 463: 125355.
[22]Zhang, Xulun; Sun, Peng; Xi, Lixia*; Zheng, Zibo; Du, Shucheng; Wei, Jiacheng; Wu, Yue; Zhang, Xiaoguang.Nonlinear-frequency-packing nonlinear frequency division multiplexing transmission.Optics Express, 2020, 28(10): 15360-15375.
[23]Li, Xue; Zhang, Xiaoguang; Zheng, Zibo; Cui, Nan; Zhang, Nannan; Zhang, Wenbo; Tang, Xianfeng; Zhang, Hu; Xi, Lixia*.Polarization demultiplexing scheme for probabilistic shaping Stokes vector direct detection systemusing extended Kalman filter.Optics Communications, 2020, 461: 125192.
[24]Chen, Ze; Zhang, Hu*; Zhang, Xiaoguang; Li, Hui; Zhang, Wenbo; Xi, Lixia.Cross-coupling effect induced beam shifts for polarized vortex beam at two-dimensional anisotropic monolayer graphene surface.Optics Express, 2020, 28(6): 8308-8323.
[25]Zhang, Wenbo*; Zhu, Dingcheng; Zhang, Nannan; Xu, Hengying; Zhang, Xiaoguang; Zhang, Hu; Li, Yong.Identifying Probabilistically Shaped Modulation Formats Through 2D Stokes Planes With Two-Stage Deep Neural Networks.IEEE Access, 2020, 8: 6742-6750.
[26]Zhang, Nannan; Yi, Wei; Zheng, Zibo; Cui, Nan; Guo, Ruipu; Qiu, Liyuan; Zhang, Xiaoguang*; Xi, Lixia; Zhang, Wenbo; Xu, Hengying.Joint equalization of linear impairments using two-stage cascade Kalman filter structure in coherent optical communication systems.Optics Communications, 2019, 453: UNSP 124398.
[27]Li, Xuan; Chen, Nan-Kuang; Xi, Lixia*; Zhang, Hu; Zhang, Xiaoguang; Zhang, Wenbo; Tang, Xianfeng.Micro-fiber Mach-Zehnder interferometer based on ring-core fiber.Optics Express, 2019, 27(24): 375537.
[28]Wu, Yuqi; Yan, Dong; Chen, Nan-Kuang*; Grattan, Kenneth T., V; Rahman, B. M. A.; Li, Xuan; Tian, Zhen; Zhang, Liqiang; Zhang, Xia; Zhang, Xiaoguang; Xi, Lixia; Zhang, Hu.High sensitivity micro-fiber Mach-Zehnder interferometric temperature sensors with a high index ring layer.Optics Express, 2019, 27(23): 34248-34258.
[29]Zheng, Zibo; Zhang, Xulun; Yu, Ruihua; Xi, Lixia*; Zhang, Xiaoguang.Frequency offset estimation for nonlinear frequency division multiplexing with discrete spectrum modulation.Optics Express, 2019, 27(20): 28223-28238.
[30]Jing, Chenxin; Tang, Xianfeng*; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.Time Domain Synchronous OFDM System for Optical Fiber Communications.China Communications, 2019, 16(9): 155-164.
[31]Qiu Liyuan; Zheng Zibo; Zhang Xiaoguang*; Xi Lixia; Zhang Wenbo; Yi Wei; Xu Hengying; Tang Xianfeng.An adaptive Kalman filter for extreme polarization effects equalization in coherent optical communication system.Optics Communications, 2019, 445: 125-135.
[32]Wang, Dongfei; Tang, Xianfeng*; Xi, Lixia*; Zhang, Xiaoguang; Fan, Yichen.A filterless scheme of generating frequency 16-tupling millimeter-wave based on only two MZMs.Optics and Laser Technology, 2019, 116: 7-12.
[33]Yi, Wei; Zheng, Zibo; Cui, Nan; Zhang, Xiaoguang*; Qiu, Liyuan; Zhang, Nannan; Xi, Lixia; Zhang, Wenbo; Tang, Xianfeng.Joint equalization scheme of ultra-fast RSOP and large PMD compensation in presence of residual chromatic dispersion.Optics Express, 2019, 27(15): 21897-21914.
[34]Zhang, Hu; Wang, Zhaocai; Xi, Lixia*; Du, Cheng; Zhang, Xiaoguang; Li, Hui; Jiao, Xiangsen; Zhang, Wenbo.All-fiber broadband multiplexer based on an elliptical ring core fiber structure mode selective coupler.Optics Letters, 2019, 44(12): 2994-2997.
[35]Jiao, Xiangsen; Zhang, Hu*; Zhang, Xiaoguang; Li, Hui; Wei, Jiacheng; Wang, Zhaocai; Xi, Lixia; Zhang, Wenbo; Tang, Xianfeng.Performance of circular photonic crystal fiber transmitting orbital angular momentum modes under macro-bending.Journal of Optics, 2019, 21(6): 065703.
[36]Cui Nan; Zheng Zibo; Zhang Xiaoguang*; Yi Wei; Guo Ruipu; Zhang Wenbo; Tang Xianfeng; Xu Hengying; Xi Lixia.Joint blind equalization of CD and RSOP using a time-frequency domain Kalman filter structure in Stokes vector direct detection system.Optics Express, 2019, 27(8): 11557-11570.
[37]Zhang Hu*; Han Di; Xi Lixia*; Zhang Zhuo; Zhang Xiaoguang; Li Hui; Zhang Wenbo.Two-Layer Erbium-Doped Air-Core Circular Photonic Crystal Fiber Amplifier for Orbital Angular Momentum Mode Division Multiplexing System.Crystals, 2019, 9(3): 156.
[38]Yang Jingxuan*; Zhang Hu*; Zhang Xiaoguang; Li Hui; Xi Lixia.Analysis of the Transmission Characteristic and Stress-Induced Birefringence of Hollow-Core Circular Photonic Crystal Fiber.Crystals, 2019, 9(3): 128.
[39]Yang Jingxuan*; Zhang Hu*; Zhang Xiaoguang; Li Hui; Xi Lixia.Transmission Characteristics of Adaptive Compensation for Joint Atmospheric Turbulence Effects on the OAM-Based Wireless Communication System.APPLIED SCIENCES-BASEL, 2019, 9(5): 901.
[40]Chen, Na*; Zhang, Xiaoguang; Sun, Songlin.An Adaptive Coverage Enhancement Scheme Based on mmWave RoF for Future HetNets.IEEE Access, 2019, 7: 29107-29113.
[41]Chen, Na*; Zhang, XiaoZhang, Xiaoguangguang; Su, Songlin.A Joint Scheduling and Beamforming Scheme for RoF-Aided MC-SSN.IEEE Access, 2019, 7: 29245-29252.
[42]Zhang, Wenbo; Zhu, Dingcheng; He, Zihang; Zhang, Nannan; Zhang, Xiaoguang; Zhang, Hu; Li, Yong*.Identifying modulation formats through 2D Stokes planes with deep neural networks.Optics Express, 2018, 26(18): 23507-23517.
[43]Cui Nan; Zhang Xiaoguang*; Zheng Zibo; Xu Hengying; Zhang Wenbo; Tang Xianfeng; Xi Lixia; Fang Yuanyuan; Li Liangchuan.Two-parameter-SOP and three-parameter-RSOP fiber channels: problem and solution for polarization demultiplexing using Stokes space.Optics Express, 2018, 26(16): 21170-21183.
[44]Li, Hui; Zhang, Hu*; Zhang, Xiaoguang; Zhang, Zhuo; Xi, Lixia; Tang, Xianfeng; Zhang, Wenbo; Zhang, Xia.Design tool for circular photonic crystal fibers supporting orbital angular momentum modes.Applied Optics, 2018, 57(10): 2474-2481.
[45]Zheng, Zibo; Cui, Nan; Xu, Hengying; Zhang, Xiaoguang*; Zhang, Wenbo; Xi, Lixia; Fang, Yuanyuan; Li, Liangchuan.Window-split structured frequency domain Kalman equalization scheme for large PMD and ultra-fast RSOP in an optical coherent PDM-QPSK system.Optics Express, 2018, 26(6): 7211-7226.
[46]Xu, Hengying; Zhang, Xiaoguang*; Tang, Xianfeng; Bai, Chenglin; Xi, Lixia; Zhang, Wenbo; Zheng, Hongjun.Joint Scheme of Dynamic Polarization Demultiplexing and PMD Compensation Up To Second Order for Flexible Receivers.
IEEE Photonics Journal, 2017, 9(6): 7204615.
[47]Li, Jianping; Ma, Huatao; Li, Zhaohui*; Zhang, Xiaoguang.Optical Frequency Comb Generation Based on Dual-Polarization IQ Modulator Shared by Two Polarization-Orthogonal Recirculating Frequency Shifting Loops.IEEE PHOTONICS JOURNAL, 2017, 9(5): 7906110.
[48]Zhang, Hu*; Zhang, Xiaoguang; Li, Hui; Deng, Yifan; Xi, Lixia; Tang, Xianfeng; Zhang, Wenbo.The Orbital Angular Momentum Modes Supporting Fibers Based on the Photonic Crystal Fiber Structure.CRYSTALS, 2017, 7(10): 286.
[49]Zhang, Hu*; Zhang, Xiaoguang; Li, Hui; Deng, Yifan; Zhang, Xia; Xi, Lixia; Tang, Xianfeng; Zhang, Wenbo.A design strategy of the circular photonic crystal fiber supporting good quality orbital angular momentum mode transmission.Optics Communications, 2017, 397: 59-66.
[50]Zhang, Peiyu; Xi, Lixia*; Yuan, Jin; Tang, Xianfeng; Zhang, Wenbo; Li, Jianping; Zhang, Xiaoguang.Fiber nonlinearity-insensitive OSNR monitoring for coherent PM-QPSK-Nyquist-WDM system.Optical Fiber Technology, 2017, 36: 215-221.
[51]Li Linqian; Feng Yiqiao; Zhang Wenbo; Cui Nan; Xu Hengying; Tang Xianfeng; Xi Lixia; Zhang Xiaoguang*.A joint recovery scheme for carrier frequency offset and carrier phase noise using extended Kalman filter.Optical Fiber Technology, 2017, 36: 438-446.
[52]Tang, Xianfeng*; Fang, Zhongqin; Zhai, Yaxue; Jiao, Xiangsen; Gao, Na; Zhang, Xiaoguang; Xi, Lixia; Li, Jianping; Zhang, Wenbo.A Reconfigurable Optical Logic Gate With up to 25 Logic Functions Based on Polarization Modulation With Direct Detection.IEEE PHOTONICS JOURNAL, 2017, 9(2): 7802011.
[53]Deng, Yifan; Zhang, Hu*; Li, Hui; Tang, Xianfeng; Xi, Lixia; Zhang, Wenbo; Zhang, Xiaoguang.Erbium-doped amplification in circular photonic crystal fiber supporting orbital angular momentum modes.Applied Optics, 2017, 56(6): 1748-1752.
[54]Yuan, Jin; Xi, Lixia*; Zhao, Donghe; Xu, Hengying; Tang, Xianfeng; Zhang, Wenbo; Li, Jianping; Zhang, Xiaoguang.OSNR monitoring in presence of fiber nonlinearities for coherent Nyquist-WDM system.Optics Communications, 2016, 380: 10-14.
[55]Xu, Hengying; Feng, Yiqiao; Yuan, Jin; Zhang, Xiaoguang*; Bai, Chenglin.Intelligent Bandwidth-Estimation Technique for Orthogonal Frequency Division Multiplexing-Based Elastic Optical Networking.Journal of Optical Communications and Networking, 2016, 8(12): 938-946.
[56]Hui, Bingxiang; Tang, Xianfeng; Gao, Na; Zhang, Wenbo; Zhang, Xiaoguang*.High order modulation format identification based on compressed sensing in optical fiber communication system.CZhang, XiaoguangHINESE OPTICS LETTERS, 2016, 14(11): 18-22.
[57]Feng, Yiqiao; Li, Linqian; Lin, Jiachuan; Xu, Hengying; Zhang, Wenbo; Tang, Xianfeng; Xi, Lixia; Zhang, Xiaoguang*.Joint tracking and equalization scheme for multi-polarization effects in coherent optical communication systems.OPTICS EXPRESS, 2016, 24(22): 25491-25501.
[58]Li, Chengcheng; Pan, Dongwei; Feng, Yiqiao; Lin, Jiachuan; Xi, Lixia; Tang, Xianfeng; Zhang, Wenbo; Zhang, Xiaoguang*.Carrier phase estimation scheme for faster-than-Nyquist optical coherent communication systems.Chinese Optics Letters,2016,14(10):19-23.
[59]Pan, Dongwei; Li, Chengcheng; Feng, Yiqiao; Zhang, Xiaoguang*.An effective carrier phase estimation scheme in faster than Nyquist WDM transmission system.Photonic Network Communications, 2016, 32(2): 253-258.
[60]Zhai, Yaxue; Tang, Xianfeng*; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.Performance analysis of an all-optical logic gate based on a single I/Q modulator with direct detection.Applied Optics, 2016, 55(25): 6807-6812.
[61]Zhang, Hu*; Zhang, Wenbo*; Xi, Lixia*; Tang, Xianfeng*; Zhang, Xia*; Zhang, Xiaoguang*.A New Type Circular Photonic Crystal Fiber for Orbital Angular Momentum Mode Transmission.IEEE Photonics Technology Letters, 2016, 28(13): 1426-1429.
[62]Tian, Wei; Zhang, Hu; Zhang, Xiaoguang*; Xi, Lixia; Zhang, Wenbo; Tang, Xianfeng.A circular photonic crystal fiber supporting 26 OAM modes.Optical Fiber Technology, 2016, 30: 184-189.
[63]Filion, Benoit*; Lin Jiachuan; Nguyen, An T.; Zhang, Xiaoguang; LaRochelle, Sophie; Rusch, Leslie A..Semiconductor Optical Amplifier-Based Wavelength Conversion of Nyquist-16QAM for Flex-Grid Optical Networks.Journal of Lightwave Technology, 2016, 34(11): 2724-2729.
[64]Tang, Xianfeng*; Zhai, Yaxue; Sun, Lu; Feng, Yiqiao; Zhao, Donghe; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.Implementation of a Reconfigurable Optical Logic Gate Using a Single I/Q Modulator With Direct Detection.IEEE Photonics Journal, 2016, 8(3): 7802808.
[65]Zhu, Min; Tang, Xianfeng; Xi, Lixia; Zhang, Wenbo; Zhang, Xiaoguang*.Photonic generation of frequency-quadrupling millimeter-wave signals using polarization property.Optical Engineering, 2016, 55(3): 031106.
[66]Zhang, Wenbo*; Pan, Dongwei; Su, Xiaofei; Zhang, Xiaoguang*; Xi, Lixia; Tang, Xianfeng.Pilot-added carrier-phase recovery scheme for Nyquist M-ary quadrature amplitude modulation optical fiber communication system.Optics Letters,2016,14(02):10-14.
[67]Li Yun; Xi Lixia*; Zhang Xiaoguang; Tang Xianfeng; Wan Dong.Experimental research on chromatic dispersion measurement based on digital phase detector.CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2016, 43(10): 1004003.
[68]Ding J.; Wu B.; He C.; Zheng M.; Zhang X..Reflection and transmission characteristics of ultrasonic energy in the adhesive structure.Journal of Beijing University of Technology, 2016, 42(3): 329-337.
[69]Pan Dongwei; Tang Xianfeng; Feng Yiqiao; Li Chengcheng; Lin Jiachuan; Xi Lixia; Zhang Wenbo; Zhang Xiaoguang*.An effective scheme of optical pilot aided carrier phase estimation for a time packing Nyquist optical communication system.Optical Fiber Technology, 2015, 26: 135-141.
[70]Sun, Lu; Li, Jianping; Lin, Jiachuan; Xi, Lixia; Tang, Xianfeng; Zhang, Xiaoguang*.Performance analysis on quality of optical frequency comb generated by the recirculating frequency shifter based on linear IQ modulator.Optical Engineering, 2015, 54(11): 116106.
[71]Cheng, Longxue; Xi, Lixia*; Zhao, Donghe; Tang, Xianfeng; Zhang, Wenbo; Zhang, Xiaoguang.Improved modulation format identification based on Stokes parameters using combination of fuzzy c-means and hierarchical clustering in coherent optical communication system.Chinese Optics Letters,2015,13(10):39-43.
[72]Zhu, Min; Zhang, Wenbo; Xi, Lixia; Tang, Xianfeng; Zhang, Xiaoguang*.A new designed dual-guided ring-core fiber for OAM mode transmission.Optical Fiber Technology, 2015, 25: 58-63.
[73]Zhao Donghe; Xi Lixia; Tang Xianfeng; Zhang Wenbo; Qiao Yaojun; Zhang Xiaoguang*.Digital pilot aided carrier frequency offset estimation for coherent optical transmission systems.Optics Express, 2015, 23(19): 24822-24832.
[74]Zhang, Wenbo; Li, Chao; Zhang, Xiaoguang*; Xi, Lixia; Tang, Xianfeng; He, Wenxue.A good performance watermarking LDPC code used in high-speed optical fiber communication system.Optics Communications, 2015, 346: 99-105.
[75]Li, Jianrui; Lin, Jiachuan; Zhang, Xiaoguang*; Xi, Lixia; Tang, Xianfeng; Qiao, Yaojun.Scheme for generation of flat top and high signal-to-noise ratio optical frequency comb.Chinese Optics Letters,2015,13(01):35-40.
[76]Su, Xiaofei*; Xi, Lixia; Tang, Xianfeng; Zhang, Zhaomin; Bai, Shunchang; Zhang, Wenbo; Zhang, Xiaoguang.A Multistage CPE Scheme Based on Crossed Constellation Transformation for M-QAM.IEEE Photonics Technology Letters, 2015, 27(1): 77-80.
[77]Liu Yi; Zhang Wen bo*; Xi Li xia; Tang Xian feng; Zhang Xiao guang.A new LDPC decoding scheme for PDM-8QAM BICM coherent optical communication system.Optoelectronics Letters, 2015, 11(6): 449-452.
[78]Lin, Jiachuan; Xi, Lixia; Li, Jianping; Li, Jianrui; Tang, Xianfeng; Sun, Lu; Zhang, Xiaoguang*.High-quality frequency-locked optical frequency comb source for terabits optical communication system.Optical Engineering, 2014, 53(12): 122608.
[79]Sun, Yiping; Xi, Lixia*; Tang, Xianfeng; Zhao, Donghe; Qiao, Yaojun; Zhang, Xia; Zhang, Xiaoguang.Joint estimation of frequency offset and chromatic dispersion based on the training sequences in M-ary QAM coherent optical transmission system.Chinese Optics Letters,2014,12(10):31-34.
[80]Zhao, Donghe*; Xi, Lixia; Tang, Xianfeng; Zhang, Wenbo; Qiao, Yaojun; Zhang, Xiaoguang.Periodic Training Sequence Aided In-Band OSNR Monitoring in Digital Coherent Receiver.IEEE Photonics Journal, 2014, 6(4): 7902009.
[81]Li, Jianping; Zhang, Xuebing; Li, Zhaohui*; Zhang, Xiaoguang; Li, Guifang; Lu, Chao.Theoretical studies on the polarization-modulator-based single-side-band modulator used for generation of optical multicarrier.Optics Express, 2014, 22(12): 14087-14095.
[82]Zhang, Zhaomin; Lin, Jiachuan; Su, Xiaofei; Xi, Lixia; Qiao, Yaojun; Zhang, Xiaoguang*.Optical domain scheme of pilot-tone-aided carrier phase recovery for Nyquist single-carrier optical communication system.Optical Engineering, 2014, 53(6): 066108.
[83]Lin, Jiachuan; Xi, Lixia; Li, Jianrui; Zhang, Xiaoguang*; Zhang, Xia; Niazi, Shahab Ahmad.Low noise optical multi-carrier generation using optical-FIR filter for ASE noise suppression in re-circulating frequency shifter loop.Optics Express, 2014, 22(7): 7852-7864.
[84]Zhang, Xia*; Lin, Jiachuan; Xi, Lixia; Zhang, Xiaoguang; Bai, Chenglin.Generation of a 50-tone optical frequency comb with a tone-to-noise ratio larger than 37 dB.Optical Fiber Technology, 2014, 20(2): 116-119.
[85]Li, Jianrui; Xi, Lixia; Tang, Xianfeng; Lin, Jiachuan; Zhang, Xia*; Cheng, Hongqiao; Zhang, Xiaoguang.Analysis of performance of RFS-based optical comb influenced by linewidth of laser source.Chinese Optics Letters,2014,12(02):13-17.
[86]Tian, Feng; Zhang, Xiaoguang*; Xi, Lixia; Stark, Andy; Ralph, Stephen E.; Chang, Gee-kung.Investigation of interchannel nonlinear tolerance of 256-Gb/s polarization-division multiplexing return-to-zero 16-ary quadrature amplitude modulation in a hybrid wavelength-division multiplexing transmission system using optical comb.Optical Engineering, 2014, 53(1): 016111.
[87]Zhang Wei; Xi Lixia*; Zhao Donghe; Zhang Zhaomin; Bai Shunchang; Tang Xianfeng; Zhang Xiaoguang.Chromatic dispersion dynamic monitoring and compensation based in peak to average power ratio for coherent optical communication receiving system.CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2014, 41: s105009.
[88]Zhang Xia*; Su Xiaofei; Zhang Lei; Xi Lixia; Zhang Xiaoguang; Bai Chenglin.Analysis of orbital angular momentum modes based on high-order bessel functions in optical fiber of ring refractive index distribution.CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2014, 41(12): 1205002.
[89]Zhang Lei; Zhang Xiaoguang; Xi Lixia*; Zhao Donghe; Tang Xianfeng; Zhang Xia.Modified optical-signal-noise-ratio monitoring method based on high order statistical moment in PM-QPSK coherent optical system.CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2014, 41(5): 0505004.
[90]Wang Lingzi; Tang Xianfeng; Zhang Xiaoguang*; Zhang Xia; Xi Lixia.Blind phase estimation algorithms based on decision-directed and decision-feedback in PDM-CO-OFDM systems.CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2014, 41(3): 0305001.
[91]Sun Lu; Lin Jiachuan; Li Jianrui; Tang Xianfeng; Xi Lixia; Zhang Xiaoguang.Scheme for suppressing harmonic crosstalk in multi-carrier generation using linear IQ modulator.CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2014, 41(12): 1205001.
[92]Yang, Song*; Zhang, Xiaoguang; Xi, Lixia; Zhao, Donghe.Analysis and application of fiber bending in high-speed optical communication.Chinese Optics Letters, 2014, 12(s1): S10601.
[93]Yang, Song*; Zhang, Xiaoguang; Xi, Lixia; Zhao, DongHe.The network test tools based on SDN.Chinese Optics Letters, 2014, 12(s1): S10602.
[94]Zhao Donghe; Xi Lixia; Yang Song; Weng Xuan; Zhang Xiaoguang*; Zhang Wenbo.Chromatic dispersion monitoring based on auto-correlation function of signal power waveform.Acta Optica Sinica, 2013, 33(12).
[95]Tian, Feng*; Zhang, Xiaoguang; Xi, Lixia; Stark, Andy; Ralph, Stephen E.; Chang, Gee-kung.Experiment of 2.56-Tb/s, polarization division multiplexing return-to-zero 16-ary quadrature amplitude modulation, 25 GHz grid coherent optical wavelength division multiplexing, 800 km transmission based on optical comb in standard single-mode fiber.Optical Engineering, 2013, 52(11): 116103.
[96]Meng, Wan; Xi, Lixia*; Zhang, Xiaoguang; Lin, Jiachuan; Tian, Feng; Tu, Hao; Zhang, Xia.Theoretical analysis of the performance of a single side band multicarrier source based on a re-circulating frequency shifter influenced by an optical bandpass filter.Chinese Optics Letters,2013,11(09):1-4.
[97]Peng, Wenyu; Xi, Lixia*; Weng, Xuan; Zhang, Xia; Zhao, Donghe; Zhang, Xiaoguang.Novel in-band OSNR monitoring method based on polarization interference.Chinese Optics Letters,2013,11(08):1-3.
[98]Tu, Hao; Xi, Lixia; Zhang, Xiaoguang; Zhang, Xia; Lin, Jiachuan; Meng, Wan.Analysis of the performance of optical frequency comb based on recirculating frequency shifter influenced by an Er-doped fiber amplifier.Photonics Research, 2013, 1(2): 88-91.
[99]Huang, Yusha*; Zhang, Xiaoguang; Xi, Lixia.Modified Synchronization Scheme for Coherent Optical OFDM Systems.Journal of Optical Communications and Networking, 2013, 5(6): 584-592.
[100]Zhang X*; Zhu J.Skeleton of weighted social network.Physica A: Statistical Mechanics and Its Applications , 2013, 392(6): 1547-1556.
[101]Lin Jia-Chuan; Xi Li-Xia; Zhang Xia*; Tian Feng; Liang Xiao-Chen; Zhang Xiao-Guang.A combined scheme of polarization mode dispersion compensation and polarization de-multiplexing in a polarization division multiplexing system with direct detection.ACTA PHYSICA SINICA, 2013, 62(11): 114209.
[102]Zhou, Hao; Xi, Lixia; Li, Jianping; Zhang, Xiaoguang*; Liu, Na.Theoretical analysis of polarization control for the stable output of multi-carrier source based on a re-circulating frequency shifter.Chinese Optics Letters,2012,10(10):17-20.
[103]Li, Jianping; Zhang, Xiaoguang*; Xi, Lixia.Generation of stable and high-quality frequency-locked carriers based on improved re-circulating frequency shifter.Optics Communications, 2012, 285(20): 4072-4075.
[104]Liu Na*; Xi Li-Xia; Li Jian-Ping; Zhang Xiao-Guang; Tian Feng; Zhou Hao.A scheme for improving optical signal-to-noise ratio of multi-carrier source based on recirculating frequency shifter.Acta Physica Sinica, 2012, 61(17): 174209.
[105]Ma Yong-Xin*; Xi Li-Xia; Chen Guang; Zhang Xiao-Guang.Optimization of regenerator based on semiconductor optical amplifier for degraded differential phase shift keying signal.Chinese Physics B,2012,21(06):322-327.
[106]Zhang, Jinnan*; Gu, Yue; Yuan, Xueguang; Tian, Feng; Zhang, Xiaoguang; Tao, Jinjing.New control algorithm for automatic PMD compensation system.Chinese Optics Letters,2012,10(03):27-30.
[107]Pan Wei*; Yu He-Jun; Zhang Xiao-Guang; Xi Li-Xia.Numerical simulation and analysis of a high-Q two-dimensional photonic crystal L3 microcavity.Acta Physica Sinica, 2012, 61(3): 034209.
[108]Qin Jiang-Xing*; Xi Li-Xia; Zhang Xiao-Guang; Tian Feng.Polarization mode dispersion compensation in a novel dual polarization differential quadrature phase shift keying system.Chinese Physics B,2011,20(11):241-247.
[109]Zhang, Xiaoguang*; Weng, Xuan; Tian, Feng; Zhang, Wenbo; Zhang, Yangan; Xi, Lixia; Zhang, Guangyong; Xiong, Qianjin.Demonstration of PMD compensation by using a DSP-Based OPMDC prototype in a 43-Gb/s RZ-DQPSK, 1200 km DWDM transmission.OPTICS COMMUNICATIONS, 2011, 284(18): 4156-4160.
[110]Xi Li-Xia*; Li Jian-Ping; Zhang Xiao-Guang; Tian Feng; Zhang Wen-Bo.Factors affecting the performance of a multi-tone carrier source based re-circulating frequency shifter.Chinese Physics B,2011,20(08):214-219.
[111]Tian Feng*; Zhang Xiao-Guang; Weng Xuan; Xi Li-Xia; Zhang Yang-An; Zhang Wen-Bo.High-speed polarization mode dispersion compensation in a 43-Gb/s RZ-DQPSK transmission system over 1200 km of standard single-mode fibre.Chinese Physics B,2011,20(08):147-153.
[112]Tian, Feng*; Zhang, Xiaoguang; Li, Jianping; Xi, Lixia.Generation of 50 Stable Frequency-Locked Optical Carriers for Tb/s Multicarrier Optical Transmission Using a Recirculating Frequency Shifter.JOURNAL OF LIGHTWAVE TECHNOLOGY, 2011, 29(8): 1085-1091.
[113]Xi Li-Xia*; Li Jian-Ping; Du Shu-Cheng; Xu Xia; Zhang Xiao-Guang.Semiconductor optical amplifier used as regenerator for degraded differential phase-shift keying signals.Chinese Physics B,2011,20(02):315-319.
[114]Li, Jianping*; Zhang, Xiaoguang; Tian, Feng; Xi, Lixia.Theoretical and experimental study on generation of stable and high-quality multi-carrier source based on re-circulating frequency shifter used for Tb/s optical transmission.OPTICS EXPRESS, 2011, 19(2): 848-860.
[115]Tian, Feng; Xi, Lixia; Zhang, Xiaoguang; Weng, Xuan; Zhang, Guangyong; Xiong, Qianjin.An experiment of PMD compensation in 40-Gb/s PSBT transmission system.Chinese Optics Letters, 2010, 8(9): 816-818.
[116]Tian Feng; Zhang Xiao-Guang; Li Jian-Ping; Xi Li-Xia.An Experiment for Generating the 14-Tone Stable Carriers Using Recirculating Frequency Shifter.CHINESE PHYSICS LETTERS, 2010, 27(9): 094206.
[117]Li, Jianping; Li, Xuan; Zhang, Xiaoguang; Tian, Feng; Xi, Lixia.Analysis of the stability and optimizing operation of the single-side-band modulator based on recirculating frequency shifter used for the T-bit/s optical communication transmission.OPTICS EXPRESS, 2010, 18(17): 17597-17609.
[118]Xi, Lixia; Zhang, Xiaoguang; Tang, Xianfeng; Weng, Xuan; Tian, Feng.A novel method to calibrate LiNbO3-based polarization controllers.Chinese Optics Letters, 2010, 8(8): 804-806.
[119]Xi, Lixia*; Zhang, Xiaoguang; Tian, Feng; Tang, Xianfeng; Weng, Xuan; Zhang, Guangyong; Li, Xixiang; Xiong, Qianjin.Optimizing the Operation of LiNbO(3)-Based Multistage Polarization Controllers Through an Adaptive Algorithm.IEEE Photonics Journal, 2010, 2(2): 195-202.
[120]Zhang Xiao-Guang; Fang Guang-Qing; Zhao Xin-Yuan; Zhang Wen-Bo; Xi Li-Xia; Xiong Qian-Jin; Li Xi-Xiang; Zhang Guang-Yong.A polarization stabilizer up to 12.6 krad/s with an additional function of stable state of polarization transformation.].Chinese Physics B,2010,19(04):311-317.
[121]Xi, Lixia*; Duan, Gaoyan; Zhang, Xiaoguang.Quickly obtaining degree of polarisation ellipsoid by using particle swarm optimisation.International Journal of Bio-Inspired Computation, 2010, 2(1): 51-58.
[122]Xi Li-Xia; Tang Xian-Feng; Wang Shao-Kang; Zhang Xiao-Guang.Design and optimization of phase regenerator with photonic crystal fiber.Acta Physica Sinica, 2009, 58(9): 6243-6247.
[123]Tang, Xianfeng; Zhang, Xiaoguang; Xi, Lixia.Analysis of phase regeneration of DPSK/DQPSK signals based on phase-sensitive amplification.CHINESE OPTICS LETTERS, 2009, 7(5): 380-383.
[124]Zhang Hu; Yang Bo-Jun; Liu Yu-Min; Wang Qiu-Guo; Yu Li; Zhang Xiao-Guang.Zero dispersion wavelength and dispersion slope control of hollow-core photonic bandgap fibres.CHINESE PHYSICS B, 2009, 18(3): 1116-1122.
[125]Zhang Xiao-Guang; Zheng Yuan.The number of least degrees of freedom required for a polarization controller to transform any state of polarization to any other output covering the entire Poincare sphere.Chinese Physics B, 2008, 17(7): 2509-2513.
[126]Liu, YM; Yu, ZG; Yang, HB; Zhang, N; Feng, Q; Zhang, XG.Numerical optimization and simulation to wavelength-division multiplexing isolation filter consisted of two identical long period fiber grating.OPTICS COMMUNICATIONS, 2005, 246(4-6): 367-372.
[127]Zheng, Y; Zhang, XG; Shen, Y; Zhou, GT; Yang, BJ.Automatic polarization-mode dispersion compensation by a particle-swarm optimization method and adaptive dithering algorithm.JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2005, 22(2): 336-346.
[128]Zhang, XG; Zheng, Y; Shen, Y; Zhang, JZ; Yang, BJ.Particle swarm optimization used as a control algorithm for adaptive PMD compensation.IEEE PHOTONICS TECHNOLOGY LETTERS, 2005, 17(1): 85-87.
發(fā)表英文會議論文:
[1]Yang, Tongxin; Zhang, Hu; Xi, Lixia; Yang, Jingxuan; Chen, Ze; Wang, Xiaoqian; Zhang, Xiaoguang. Polarization-maintaining fiber with elliptical core supporting 18 modes for mode division multiplexing.26th Optoelectronics and Communications Conference, OECC 2021, 2021-07-03 To 2021-07-07.
[2]Yang, Tongxin; Zhang, Hu; Xi, Lixia; Yang, Jingxuan; Chen, Ze; Wang, Xiaoqian; Zhang, Xiaoguang.Design of a novel bow-tie polarization ring-core few-mode fiber for MIMO-free MDM system.26th Optoelectronics and Communications Conference, OECC 2021, 2021-07-03 To 2021-07-07.
[3]Liu, Ling; Cui, Nan; Zhang, Xiaoguang*; Zhang, Bin.Modeling of PMD for wideband fiber channel and its influence on optical fiber communication system.26th Optoelectronics and Communications Conference, OECC 2021, Virtual, Online, China, 2021-07-03 To 2021-07-07.
[4]Wang, Dongfei; Tang, Xianfeng*; Fan, Yichen; Zhang, Xiaoguang; Xi, Lixia*; Zhang, Wenbo.A novel filterless scheme for 16 tupled frequency millimeter-wave generation based on only two MZMs.17th International Conference on Optical Communications and Networks (ICOCN), 2018-11-16 to 2018-11-19.
[5]Wang, Zhaocai; Zhang, Hu*; Li, Hui; Xia, Li Xia; Zhang, Xiaoguang; Zhang, Wenbo.All-Fiber Ring Fiber Structure Fused-type Mode Selective Coupler with Polarization-Maintaining and Wide Bandwidth.17th International Conference on Optical Communications and Networks (ICOCN), 2018-11-16 to 2018-11-19.
[6]Cui, Nan; Zheng, Zibo; Zhang, Xiaoguang*; Yi, Wei; Guo, Ruipu; Zhang, Wenbo; Xi, Lixia; Tang, Xianfeng.Joint Blind Equalization of CD and RSOP Using Kalman Filter in Stokes Vector Direct Detection System.Conference on Lasers and Electro-Optics (CLEO), 2019-05-05 to 2019-05-10.
[7]Guo, Ruipu; Zheng, Zibo; Cui, Nan; Zhang, Xiaoguang*; Zhang, Wenbo; Xi, Lixia.Kalman Scheme Implement for RSOP Equalization in Hardware Perspective.17th International Conference on Optical Communications and Networks (ICOCN), China,Guangdong,Zhuhai, 2018-11-16 to 2018-11-19.
[8]Yi, Wei; Zheng, Zibo; Cui, Nan; Qiu, Liyuan; Zhang, Xiaoguang*; Zhang, Nannan; Zhang, Wenbo; Xi, Lixia.Joint Equalization Scheme of Ultra-fast RSOP and Large PMD in Presence of Residual Chromatic Dispersion.Optical Fiber Communications Conference and Exhibition (OFC), 2019-03-03 to 2019-03-07.
[9]Han Di; Zhang Hu; Xi Lixia; Zhang Xiaoguang; Zhang Wenbo; Tang Xianfeng.Two-layer Erbium Doped Annular Photonic Crystal Fiber Amplifier for Orbital Angular Momentum Multiplexing System.2018 Asia Communications and Photonics Conference, ACP 2018, 2018-10-26 To 2018-10-29.
[10]Shang Qisong; Zheng Zibo; Cui Nan; Zhang Nannan; Zhang Wenbo; Xu Hengying; Tang Xianfeng; Xi Lixia; Zhang Xiaoguang*.RSOP equalization through an Extend Kalman Filter scheme in Stokes Vector Direct Detection system.CLEO: Applications and Technology, CLEO_AT 2018 , 2018-05-13 To 2018-05-18.
[11]Cui Nan; Zheng Zibo; Zhang Wenbo; Xi Lixia; Tang Xianfeng; Zhang Xiaoguang.2-parameter-soP and 3-parameter-RSOP fiber channel: Trouble and solution for polarization demultiplexing using stokes space.Conference on Lasers and Electro-Optics/Pacific Rim, CLEOPR 2018, 2018-07-29 To 2018-08-03.
[12]Jing Chenxin; Tang Xianfeng; Zhang Xiaoguang; Xi Lixia; Zhang Wenbo.Time Domain Synchronous OFDM System for Optical Fiber Communications.2018 Asia Communications and Photonics Conference, ACP 2018, 2018-10-26 To 2018-10-29.
[13]Zhang, Nannan; Zheng, Zibo; Guo, Ruipu; Cui, Nan; Xu, Hengying; Zhang, Wenbo; Xi, Lixia; Zhang, Xiaoguang*.A Carrier Phase Recovery Scheme Based on Linear Kalman Filter.10th International Conference on Advanced Infocomm Technology (ICAIT), 2018-08-12 To 2018-08-15.
[14]Gao Na; Tang Xianfeng; Feng Yiqiao; Hui Bingxiang; Zhang Xiaoguang; Xi Lixia; Zhang Wenbo.A noise-folding suppression method in photonic compressed sampling.Conference on Lasers and Electro-Optics/Pacific Rim, CLEOPR 2017, 2017-07-31 To 2017-08-04.
[15]Li Hui; Zhang Hu; Zhang Xiaoguang; Deng Yifan; Xi Lixia; Tang Xianfeng; Zhang Wenbo.Design tools for circular photonic crystal fibers supporting orbital angular momentum modes.2017 Opto-Electronics and Communications Conference, OECC 2017 and Photonics Global Conference, PGC 2017, 2017-07-31 to 2017-08-04.
[16]Xu Hengying; Tang Xianfeng; Cui Liangze; Shang Qisong; Zhang Nannan; Xi Lixia; Zhang Wenbo; Zhang Xiaoguang*; Bai Chenglin.Joint equalization scheme of polarization-state and polarization mode dispersion based on extended kalman filter.Asia Communications and Photonics Conference, ACPC 2017, China,Guangdong,Guangzhou, 2017-11-10 to 2017-11-13.
[17]Zhang Hu*; Zhang Wenbo; Xi Lixia; Tang Xianfeng; Zhang Xiaoguang.A new design of a circular photonic crystal fiber supporting 42 OAM modes.Australian Conference on Optical Fibre Technology, ACOFT 2016, 2016-09-05 To 2016-09-08.
[18]Zhang, Xiaoguang*; Lin, Jiachuan; Rusch, Leslie An..High quality optical comb and optical comb based terabit optical transmission system.Photonics North Conference (PN), 2016 to 2016-05-26.
[19]Li, Chunsheng*; Wang, Tao; Li, Linyin; Zhang, Xiaoguang.Macrobending Loss Measurements of G.657 Fiber with Suppression of Ripple Effect Induced by Whispering Gallery Modes.8th IEEE International Conference on Advanced Infocomm Technology (ICAIT), 2015 to 2015-10-27.
[20]Zhang Hu*; Zhang Wenbo; Xi Lixia; Tang Xianfeng; Tian Wei; Zhang Xia; Zhang Xiaoguang.Design of a circular photonic crystal fiber supporting OAM modes.Asia Communications and Photonics Conference, ACPC 2015, 2015-11-19 To 2015-11-23.
[21]Tang, Xianfeng*; Sun, Lu; Zhao, Donghe; Feng, Yiqiao; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.Experimental Demonstration of high-speed Logic Gates of OR, AND, XOR and NOR in optical domain based on a Single I/Q Modulator and Direct Detection.IEEE International Conference on Microwaves, Communications, Antennas and Electronic Systems (COMCAS), 2015 to 2015-11-04.
[22]Tang, Xianfeng*; Pan, Dongwei; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.A Novel Receiver Employing a Compound-eye Lens and a Frequency Domain Synchronization Algorithm for Multiple-input Single-output Visible Light Communication System.14th International Conference on Optical Communications and Networks, 2015 to 2015-07-05.
[23]Zhu, Min; Zhang, Xiaoguang*; Xi, Lixia; Zhang, Wenbo; Tang, Xianfeng.Analysis of Frequency Quadrupling Using a Single LN Intensity Modulator and a Faraday Mirror Based Bidirectional Polarization Rotator for Millimeter Wave Generation.14th International Conference on Optical Communications and Networks, 2015 to 2015-07-05.
[24]Zhang, Xiaoguang*; Pan, Dongwei; Feng, Yiqiao.A NEW CARRIER PHASE RECOVERY METHOD IN FASTER THAN NYQUIST OPTICAL FIBER COMMUNICATION SYSTEM.14th International Conference on Optical Communications and Networks, 2015 to 2015-07-05.
[25]Zhu, Min; Zhang, Xiaoguang*; Zhang, Wenbo; Xi, Lixia; Tang, Xianfeng.A new designed OAM fiber enabling the integration of classical and quantum optical fiber communications.International Conference on Optical Instruments and Technology - Optoelectronic Devices and Optical Signal Processing, 2015 to 2015-05-19.
[26]Wang Lingzi; Tang Xianfeng; Zhang Xiaoguang*; Zhaang Xia; Xi Lixia.Modified timing synchronization methods for CO-OFDM system stressed by CD and PMD.Asia Communications and Photonics Conference, ACP 2013, China,Beijing, 2013-11-12 to 2013-11-15.
[27]Zhang, Xiaoguang*; Weng, Xuan; Tian, Feng; Xi, Lixia; Xiong, Qianjin; Li, Xixiang; Zhang, Guangyong.The Experiment of the OPMDC Performance in a 43-Gb/s RZ-DQPSK 1200km Transmission Testbed.Conference on Optical Transmission Systems, Switching, and Subsystems VIII, 2010-12-08 to 2010-12-12.
[28]Zhang, Jinnan*; Zhang, Yangan; Weng, Xuan; Yuan, Xueguang; Lin, Mi; Tao Jinjing; Zhang, Xiaoguang. Adaptive PMD Compensation Using DPSO Algorithm for High-speed Optical Fibre Communication Systems.Conference on Optical Transmission Systems, Switching, and Subsystems VIII, 2010-12-08 to 2010-12-12.
[29]Qin, Jiangxing*; Xi, Lixia; Zhang, XiaoGuang; Xu, Xia.A novel Dual-Polarization DQPSK System and its Performance Analysis.Conference on Optical Transmission Systems, Subsystems, and Technologies IX, 2011-11-13 to 2011-11-16.
[30]Fan, Yi*; Zhang, Xiaoguang; Xi, Lixia; Zhang, Wenbo.Modified 4th-power phase recovery algorithm for square-16QAM.Conference on Optical Transmission Systems, Subsystems, and Technologies IX, 2011-11-13 to 2011-11-16.
[31]Di, Qingyue*; Weng, Xuan; Sun, Yang; Tian, Feng; Xi, Lixia; Zhao, Xiaohong; Zhang, Xiaoguang.An Experiment of De-multiplexing for Polarization Division Multiplexing System by PSO Algorithm.Conference on Optical Transmission Systems, Switching, and Subsystems VIII, 2010-12-08 to 2010-12-12.
[32]Li, Jianping*; Zhang, Xiaoguang; Tian, Feng; Xi, Lixia.Generation of Stable and High-Quality Multicarrier Source Based on Re-circulating Frequency Shifter for Tb/s Optical Transmission.Conference on Optical Fiber Communication (OFC)/National Fiber Optic Engineers Conference(NFOEC), 2011-03-06 to 2011-03-10.
[33]Li, Jianping*; Li, Xuan; Zhang, Xiaoguang; Tian, Feng; Xi, Lixia.Analysis of the Stability of Recirculating Frequency Shifter Used as a Multi-Tone Wideband Light Source for Tb/s Multi-Carrier Optical Transmission.36th European Conference and Exhibition on Optical Communication (ECOC), 2010-09-19 to 2010-09-23.
[34]Tang, Xianfeng*; Zhang, Xiaoguang; Xi, Lixia; Zhang, Guangyong; Xiong, Qianjin; Li, Xixiang.A Scheme for Improving the Performance of 100-Gb/s Polarization-Multiplexed RZ33 DQPSK Signals Using the Phase Regenerator and PMD compensator.Conference on Optital Fiber Communication (OFC)/Collocated National Fiber Optic Engineers (NFOEC), 2010-06-21 to 2010-06-25.
[35]Tang Xianfeng; Zhang Xiaoguang; Zhao Xinyuan; Xi Lixia; Xiong Qianjin; Li Xixiang.PMD mitigation using combination of both PMD compensator and a novel phase regenerator in optical DQPSK system.National Fiber Optic Engineers Conference, NFOEC 2009, United States, 2009-03-22 to 2009-03-26.
[36]Tian Feng; Xi Lixia; Zhao Xinyuan; Tang Xianfeng; Wang Shaokang; Zhang Xiaoguang.Research on the principle of PSBT modulation format and its performance in the PMD compensation system.Asia Communications and Photonics Conference and Exhibition, ACP 2009, China,Shanghai, 2009-11-02 to 2009-11-06.
[37]Tian Feng; Xi Lixia; Zhao Xinyuan; Tang Xianfeng; Zhang Xiaoguang.Research on the principle of PSBT modulation format and its performance in the PMD compensation system.Optical Transmission Systems, Switching, and Subsystems VII, China,Shanghai, 2009-11-02 to 2009-11-06.
[38]Xi Lixia; Xie Yangge; Tang Xianfeng; Zhang Xiaoguang.Design and optimization of phase regenerator based on semiconductor optical amplifier.Optical Transmission Systems, Switching, and Subsystems VII, China,Shanghai, 2009-11-02 to 2009-11-06.
[39]Zhang, Jinnan; Yuan, Xueguang; Fang, Guangqing; Zhang, YangAn; Zhang, Minglun; Huang, Yongqing; Zhang, Xiaoguang.A New Control Scheme based on DSP for Automatic PMD Compensation in Optical Fiber Communication Systems.Joint IEEE North -East Workshop on Circuits and Systems/TAISA Conference 2009, 2009-06-28 to 2009-07-01.
[40]Tang, Xianfeng; Zhang, Xiaoguang; Xi, Lixia; Xiong, Qianjin; Li, Xixiang.PMD Mitigation Using Combination of PMD Compensator and a Phase Regenerator in Optical 40 Gb/s DPSK System.8th Pacific Rim Conference on Lasers and Electro-Optics, 2009-08-30 to 2009-09-03.
[41]Xi, Lixia; Tang, Xianfeng; Wang, Shaokang; Zhang, Xiaoguang.Optimization of Phase Regenerator in Differential Phase-shift Keying Format Communication System.2nd International Joint Conference on Computational Sciences and Optimization, 2009-04-24 to 2009-04-26.
[42]Zhang, Jinnan*; Yuan, Xueguang; Zhang, YangAn; Zhang, Minglun; Zhang, Xiaoguang.A High-speed Adaptive PMD Compensation Scheme Based on DSP Using DPSO Algorithm.14th OptoElectronics and Communications Conference, 2009-07-13 to 2009-07-17.
[43]Yuan, Xueguang*; Zhang, Jinnan; Zhang, Xiaoguang; Zhang, Yang'an; Zhang, Minglun; Huang, Yongqing; Ren, Xiaomin.High speed polarization monitoring for adaptive PMD compensation in optical communication systems.14th OptoElectronics and Communications Conference, 2009-07-13 to 2009-07-17.
[44]Zhang, Jinnan; Gu, Yue; Yuan, Xueguang; Zhang, Xiaoguang; Zhang, YangAn; Zhang, Minglun.An Automatic PMD Compensation Scheme Utilizing DPSO Algorithm in 80Gbits/s DQPSK System.8th Pacific Rim Conference on Lasers and Electro-Optics, 2009-08-30 to 2009-09-03.
[45]Zhang Minglun; Zhang Yangan; Yuan Xueguang; Zhang Jinnan; Zhang Xiaoguang.Optical Performance Monitoring in Reconfigurable OADM Networks.8th Pacific Rim Conference on Lasers and Electro-Optics, 2009-08-30 to 2009-09-03.
[46]Zhang, Rongguo; Zhang, Wenbo; Zhang, Xiaoguang.A New Hybrid Gradient-Based Particle Swarm Optimization Algorithm and its Applications to Control of Polarization Mode Dispersion Compensation in Optical Fiber Communication Systems.2nd International Joint Conference on Computational Sciences and Optimization, 2009-04-24 to 2009-04-26.
[47]Fang, Guangqing; Zhang, Xiaoguang.An Application of DSP to Automatic PMD Compensation in Optical Fiber Communication Systems.IEEE Asia Pacific Conference on Circuits and Systems (APCCAS 2008), 2008-11-30 to 2008-12-03.
[48]Zhang, Xiaoguang; Duan, Gaoyan; Xi, Lixia.Real-time DOP ellipsoid in polarization mode dispersion monitoring system by using PSO algorithm.7th International Conference on Computational Science (ICCS 2007), 2007-05-27 to 2007-05-30.
[49]Duan, Gaoyan; Zhang, Lan; Zhang, Xiaoguang; Yang, Bojun.Research on voltage-controlled polarization controller in the polarization mode dispersion compensation experiment - art. no. 67811X.Conference on Passive Components and Fiber-Based Devices IV, 2007-11-02 to 2007-11-05.
[50]Xu, Wei; Duan, Gaoyan; Fang, Guangqing; Xi, Lixia; Zhang, Xiaoguang.Comparison of Polarization-Mode Dispersion Compensation performance between different modulation formats - art. no. 67833G.Conference on Optical Transmission, Switching and Subsystems V, 2007-11-02 to 2007-11-05.
[51]Zhang, Xiaoguang; Duan, Gaoyan; Xu, Wei; Fang, Guangqing.PMD compensation in 10 Gb/s DPSK optical communication system - art. no. 67831S.Conference on Optical Transmission, Switching and Subsystems V, 2007-11-02 to 2007-11-05.
[52]Zhang, Xiaoguang; Xi, Lixia; Duan, Gaoyan; Yang, Bojun.Real-Time PMD monitoring Using a DOP Ellipsoid Based on PSO Technique.Conference on Lasers and Electro-Optics/Quantum Electronics and Laser Science Conference, 2007-05-06 to 2007-05-11.
[53]Duan, Gaoyan; Yang, Bojun; Zhang, Xiaoguang.Experimental research of obtaining DGD from DOP ellipsoids.Conference on Optical Transmission, Switching, and Subsystems IV, 2006-09-05 to 2006-09-07.
[54]Duan, Gaoyan; Yang, Bojun; Zhang, Xiaoguang.The compensation performance of different modulation formats in polarization mode dispersion systems.Conference on Optical Transmission, Switching, and Subsystems IV, 2006-09-05 to 2006-09-07.
[55]He, Li; Yang, Bojun; Zhang, Xiaoguang; Yu, Li.Experimental study of compressing optical pulse by using photonic crystal fiber.4th International Conference on Communications, Circuits and Systems (ICCCAS 2006), 2006-06-25 to 2006-06-28.
[56]He, Li; Yang, Bojun; Zhang, Xiaoguang; Yu, Li.Multiwavelength fiber ring laser source incorporating a Sagnac interferometer.10th International Conference on Communication Technology (ICCT 2006), 2006-11-27 to 2006-11-30.
[57]He, Li; Yang, Bojun; Zhang, Xiaoguang; Yu, Li.Generation of fundamental soliton from actively mode-locked fiber ring laser.Conference on Passive Components and Fiber-Based Devices III, 2006-09-05 to 2006-09-07.
[58]He, Li; Yang, Bojun; Zhang, Xiaoguang; Yu, Li.Spectrum broadening of Ps pulses in photonic crystal fibers.10th International Conference on Communication Technology (ICCT 2006), 2006-11-27 to 2006-11-30.
[59]He, Li; Yang, Bojun; Zhang, Xiaoguang; Yu, Li.Generation of 10 GHz transform-limited pulse train from dual-pump mode-locking erbium-doped fiber laser.Conference on Passive Components and Fiber-Based Devices III, 2006-09-05 to 2006-09-07.
[60]Zhang, Xiaoguang; Xi, Lixia; Duan, Gaoyan; Yu, Li; Yu, Zhongyuan; Yang, Bojun.An intelligent PSO-based control algorithm for adaptive compensation polarization mode dispersion in optical fiber communication systems.13th International Conference on Neural Informational Processing, 2006-10-03 to 2006-10-06.
[61]Zhang, Xiaoguang; Xi, Lixia; Duan, Gaoyan; Yu, Li; Yu, Zhongyuan; Yang, Bojun.An application of intelligent PSO algorithm to adaptive compensation for polarization mode dispersion in optical fiber communication systems.6th International Conference on Simulated Evolution and Learning, 2006-10-15 to 2006-10-18.
[62]Hu, YM; Yu, ZY; Zhang, XG.A novel tunable polarization mode dispersion compensation of linear chirped Bragg grating without shift of central wavelength by variable magnetic field.Conference on Optoelectronic Devices and Integration, 2004-11-08 to 2004-11-11.
[63]Zhang, N; Yu, ZY; Zhang, XG.Adaptive polarization mode dispersion compensation system based on DOP as the feedback control signal in 40Gbit/s OTDM system.Conference on Optical Design and Testing II, 2004-11-08 to 2004-11-12.
[64]Zhou, GT; Yu, L; Zhang, XG; Zhang, JZ; Yang, BJ; Xu, K; Lin, JT.PMD and CD tunable compensation using the nonlinear chirp SBG with uniform grating period.Conference on Optical Transmission, Switching and Subsystems II, 2004-11-09 to 2004-11-11.
[65]Zhang, XG; Duan, GY; Yu, L; Yu, ZY; Yang, BJ.PMD monitoring with PSO-based DOP ellipsoid - art. no. 60211T.Conference on Optical Transmission, Switching and Subsystems III, 2005-11-07 to 2005-11-10.
[66]Zhang, XG; Xi, LX; Yu, L; Zhou, GT; Zhang, JZ; Zhang, N; Wu, B; Yuan, TC; Chen, L; Zhang, HM; Yao, MY; Yang, BJ.Adaptive PMD compensation up to second-order in 40Gb/s OTDM optical communication system using two-stage compensator.Conference on Optical Transmission, Switching and Subsystems II, 2004-11-09 to 2004-11-11.
[67]Zhang, XG; Zheng, YA; Shen, Y; Zhang, JZ; Yang, BJ.PSO algorithm used for searching the optimum of automatic PMD compensation.1st Optical Networks and Technology Conference (OpNe Tec), 2004-10-18 to 2004-10-20.
發(fā)表中文期刊論文:
[1]肖曉晟, 劉欣格, 張曉光. 非線性光纖光學(xué)中非線性薛定諤方程推導(dǎo)邏輯的探討[J]. 物理與工程, 2023, 33 (06): 90-97.
[2]郭瑤, 張霞, 杜秋萍, 楊震山, 張曉光. 基于密度矩陣?yán)碚摰钠駬p傷聯(lián)合補償方案[J]. 光子學(xué)報, 2023, 52 (08): 72-79.
[3]張曉光,席麗霞,崔楠等.偏振表象和偏振表象變換理論以及應(yīng)用[J].大學(xué)物理,2023,42(05):1-8+27.DOI:10.16854/j.cnki.1000-0712.220373.
[4]閆煥友,唐先鋒,朱海龍,王紅艷,房博海,申晨雨,劉芝付,詹鵬,張曉光.基于雙驅(qū)馬赫-曾德爾調(diào)制器的加密調(diào)制一體化系統(tǒng)[J].光學(xué)學(xué)報,2022,42(14):55-59.
[5]王晨,席麗霞,張陽安,袁學(xué)光,張曉光,單麗楠,肖振宇,李璇.提升小波閾值聯(lián)合累加平均的BOTDR系統(tǒng)降噪方案[J].中國激光,2021,48(17):95-103.
[6]王東飛,唐先鋒,席麗霞,張曉光.基于兩個并行相位調(diào)制器的正交頻分復(fù)用矢量毫米波產(chǎn)生[J].光學(xué)學(xué)報,2020,40(18):63-69.
[7]鄭亞軍,席麗霞,張文博,張曉光.受控修剪迭代算法抑制峰均功率比的研究[J].電信快報,2019(07):37-42.
[8]秦秀娟,席麗霞,張文博,張曉光.無線自組網(wǎng)融網(wǎng)同步的實現(xiàn)[J].電信快報,2019(04):14-18.
[9]張博,張曉光,張文博.基于微云三層模型的移動云計算高可用研究[J].電信快報,2019(01):30-33.
[10]續(xù)貝貝,席麗霞,張曉光,唐先鋒,張文博.色散測量樣機的設(shè)計與實驗驗證[J].光學(xué)學(xué)報,2019,39(02):59-64.
[11]沙宇洋,席麗霞,張曉光,唐先鋒,張文博.基于小波閾值去噪的偏振模色散測量[J].中國激光,2018,45(11):226-231.
[12]潘潘,席麗霞,張曉光,唐先鋒,萬冬.基于經(jīng)驗?zāi)B(tài)分解的偏振模色散測量實驗研究[J].中國激光,2018,45(01):212-218.
[13]張曉光.自聚焦多模光纖模式色散的幾何光學(xué)與波動光學(xué)處理方法[J].物理與工程,2017,27(01):23-29+43.
[14]李赟,席麗霞,張曉光,唐先鋒,萬冬.基于數(shù)字鑒相的色散測量實驗研究[J].中國激光,2016,43(10):163-169.
[15]翟亞雪,唐先鋒,萬東,張曉光.基于LED可見光通信的實時全雙工上網(wǎng)系統(tǒng)[J].光通信技術(shù),2016,40(04):38-40.
[16]張曉光.光纖偏振控制研究:從理論和實驗到應(yīng)用[J].物理與工程,2015,25(03):13-25.
[17]何文雪,張文博,李超,席麗霞,張曉光,喬耀軍.高速相干光通信系統(tǒng)中水印輔助的低密度奇偶校驗方案[J].光電子·激光,2015,26(06):1100-1105.
[18]孫璐,林嘉川,李建蕊,唐先鋒,席麗霞,張曉光.利用線性IQ調(diào)制器抑制諧波串?dāng)_的多載波產(chǎn)生方案[J].中國激光,2014,41(12):113-118.
[19]張霞,宿曉飛,張磊,席麗霞,張曉光,白成林.折射率環(huán)狀分布光纖中基于高階貝塞爾函數(shù)的軌道角動量模式分析[J].中國激光,2014,41(12):119-124.
[20]胡子軒,張曉光.太陽能光伏發(fā)電技術(shù)和光熱轉(zhuǎn)換技術(shù)比較[J].內(nèi)蒙古科技與經(jīng)濟,2014(17):82-83.
[21]張霞,田鳳,張曉光,白成林.基于多載波的相干波分復(fù)用太比特傳輸實驗研究[J].中國激光,2014,41(06):135-140.
[22]李超,張文博,張曉光,席麗霞,唐先鋒,何文雪.基于水印位的信道估計對100 Gb/sPDM-DQPSK光通信系統(tǒng)中低密度奇偶校驗碼糾錯性能的提升[J].中國激光,2014,41(06):147-153.
[23]張磊,張曉光,席麗霞,趙東鶴,唐先鋒,張霞.PM-QPSK相干光通信系統(tǒng)中基于高階統(tǒng)計矩的光信噪比監(jiān)測方法的修正[J].中國激光,2014,41(05):125-129.
[24]付璋,張曉光,席麗霞,翁軒.PDM-16QAM系統(tǒng)中幾種相位估計算法的性能與復(fù)雜度比較以及改進(jìn)[J].光電子.激光,2014,25(03):485-490.
[25]王凌子,唐先鋒,張曉光,張霞,席麗霞.PDM-CO-OFDM系統(tǒng)中基于判決引導(dǎo)與判決反饋的盲相位估計算法[J].中國激光,2014,41(03):102-107.
[26]席麗霞,彭文雨,楊松,翁軒,張霞,張曉光.用偏振模色散模擬器加偏振片實現(xiàn)帶內(nèi)光信噪比檢測[J].光電子.激光,2014,25(01):51-55.
[27]畢偉,席麗霞,張曉光,張文博.用π旋轉(zhuǎn)型低密度奇偶校驗碼提升100Gb/s偏振復(fù)用差分正交相移鍵控光通信系統(tǒng)性能[J].中國激光,2014,41(01):110-116.
[28]趙東鶴,席麗霞,楊松,翁軒,張曉光,張文博.基于信號功率波形自相關(guān)函數(shù)的色散監(jiān)測[J].光學(xué)學(xué)報,2013,33(12):69-75.
[29]李春蕾,張曉光,席麗霞,翁軒,趙東鶴.偏振復(fù)用系統(tǒng)中FIR-BP算法有效補償非線性損傷的實驗研究[J].中國激光,2013,40(12):129-135.
[30]張霞,白成林,張曉光.高載噪比多載波光源的噪聲抑制理論及實驗研究[J].中國激光,2013,40(11):178-182.
[31]黃海麗,席麗霞,張曉光,趙東鶴,張霞.基于射頻功率譜的偏振模色散監(jiān)測技術(shù)[J].光學(xué)學(xué)報,2013,33(11):49-54.
[32]成虹橋,席麗霞,林嘉川,張曉光,張霞,李建蕊.Generation of multi-carrier based on a recirculating frequency shifter with delay interferometer[J].Optoelectronics Letters,2013,9(06):418-420.
[33]梁曉晨,林嘉川,田鳳,張曉光,席麗霞.偏分復(fù)用系統(tǒng)中直接解復(fù)用反饋信號建模及驗證[J].光電子.激光,2013,24(08):1507-1513.
[34]楊松,張曉光,席麗霞,趙東鶴.內(nèi)容感知光網(wǎng)絡(luò)及其資源分配[J].北京郵電大學(xué)學(xué)報,2013,36(03):64-68.
[35]林嘉川,席麗霞,張霞,田鳳,梁曉晨,張曉光.偏分復(fù)用系統(tǒng)中偏振模色散補償與偏分解復(fù)用一體化方案[J].物理學(xué)報,2013,62(11):303-310.
[36]Shahab Ahmad Niazi,張曉光,席麗霞,Abid Munir,Muhammad Idress.Co-existence generation of XG-PON and single carrier XLG-PON for ultra-high definition TV transmission with entirely passive optical plant[J].Optoelectronics Letters,2013,9(03):221-224.
[37]康浩,席麗霞,張曉光.應(yīng)用于40Gb/s DQPSK光通信系統(tǒng)的LDPC譯碼算法研究[J].半導(dǎo)體光電,2013,34(02):273-276.
[38]童程,邸雪靜,張曉光,席麗霞.一種改進(jìn)的光偏分復(fù)用16-QAM系統(tǒng)盲解復(fù)用算法的研究[J].光電子.激光,2013,24(04):704-709.
[39]張帥,白成林,羅清龍,張曉光.相干光OFDM系統(tǒng)中MMSE信道估計研究[J].光電子.激光,2013,24(03):508-513.
[40]黃雨莎,張曉光,席麗霞,張文博.CO-OFDM系統(tǒng)中一種改進(jìn)的同步算法方案[J].光電子.激光,2013,24(03):514-522.
[41]張帥,白成林,羅清龍,黃麗,張曉光.Study of 16 Tbit/s WDM transmission system derived from the CO-OFDM with PDM 16-QAM[J].Optoelectronics Letters,2013,9(02):124-126.
[42]李永華,張曉光,賀志強,林家儒.雙向中繼網(wǎng)絡(luò)編碼系統(tǒng)的迭代干擾抑制研究[J].重慶郵電大學(xué)學(xué)報(自然科學(xué)版),2012,24(05):530-534+584.
[43]邸雪靜,童程,張霞,張曉光,席麗霞.高速相干光通信系統(tǒng)中的自適應(yīng)步長恒模算法[J].光學(xué)學(xué)報,2012,32(10):61-65.
[44]劉娜,席麗霞,李建平,張曉光,田鳳,周浩.一種提高基于循環(huán)頻移器的多載波光源光信噪比的方案[J].物理學(xué)報,2012,61(17):292-299.
[45]郭鳳然,張曉光.基于IMS呈現(xiàn)的社交網(wǎng)絡(luò)管理系統(tǒng)[J].軟件,2012,33(08):1-8.
[46]房文敬,白成林,張霞,孫偉斌,張曉光.光MDPSK通用調(diào)制解調(diào)結(jié)構(gòu)構(gòu)建及仿真[J].光通信研究,2012(04):13-15.
[47]孫洋,席麗霞,張曉光,秦江星,林嘉川,梁曉晨.偏分復(fù)用系統(tǒng)信道串?dāng)_的理論模型及消除方案[J].光學(xué)學(xué)報,2012,32(02):92-98.
[48]潘偉,余和軍,張曉光,席麗霞.高Q值二維光子晶體缺三腔的數(shù)值模擬與分析[J].物理學(xué)報,2012,61(03):195-200.
[49]樊弋,張曉光,席麗霞,張文博.改進(jìn)的16進(jìn)制正交幅度調(diào)制碼的相位估計算法[J].光電子.激光,2011,22(12):1802-1806.
[50]徐霞,席麗霞,張曉光,童程.光數(shù)字相干接收機中色散補償模塊設(shè)計與優(yōu)化[J].光學(xué)學(xué)報,2011,31(11):59-63.
[51]張文博,張曉光,席麗霞.自適應(yīng)偏振模色散補償中的新方法[J].北京郵電大學(xué)學(xué)報,2011,34(06):19-23.
[52]黃春明,陶金晶,張陽安,張錦南,袁學(xué)光,張明倫,張曉光.高速光傳輸系統(tǒng)中自適應(yīng)偏振模色散補償[J].光通信技術(shù),2011,35(10):48-50.
[53]袁學(xué)光,張陽安,張明倫,張錦南,黃永清,張曉光.高速光通信系統(tǒng)中的偏振模色散監(jiān)測和補償[J].北京郵電大學(xué)學(xué)報,2011,34(03):113-117.
[54]席麗霞,秦江星,趙鑫媛,張曉光.只需一個解調(diào)器的偏分復(fù)用差分相移鍵控系統(tǒng)實驗實現(xiàn)[J].光學(xué)學(xué)報,2011,31(03):36-40.
[55]張霞,許恒迎,;劬,張民,王芳,白成林,張曉光.Study on 8DPSK of multi-phase modulation technology based on CSRZ[J].Optoelectronics Letters,2011,7(02):151-153.
[56]張曉光.高速光纖通信中的偏振控制技術(shù)[J].北京郵電大學(xué)學(xué)報,2011,34(01):1-10.
[57]王蓋,張陽安,張明倫,周黎明,張錦南,袁學(xué)光,張曉光.Dynamic PMD compensator for 40 Gb/s PM-DQPSK system[J].Optoelectronics Letters,2011,7(01):53-56.
[58]席麗霞,王少康,張曉光.光相位調(diào)制傳輸系統(tǒng)中相位噪聲的概率分布特性[J].光學(xué)學(xué)報,2010,30(12):3408-3412.
[59]席麗霞,謝揚戈,唐先鋒,田鳳,張曉光.基于半導(dǎo)體光放大器的相位調(diào)制信號再生器[J].光學(xué)學(xué)報,2010,30(04):940-943.
[60]張霞,王芳,張民,;劬,許恒迎,白成林,張曉光.基于CSRZ碼的DQPSK多級相位調(diào)制技術(shù)的研究[J].光通信研究,2009(05):8-9+13.
[61]席麗霞,唐先鋒,王少康,張曉光.基于光子晶體光纖的相位再生器的設(shè)計及優(yōu)化[J].物理學(xué)報,2009,58(09):6243-6247.
[62]張霞,張民,王芳,;劬,許恒迎,白成林,張曉光.CSRZ-DPSK調(diào)制信號的PMD補償性能分析[J].光通信技術(shù),2009,33(07):4-6.
[63]張曉光,段高燕,席麗霞.偏振控制器完成任意偏振態(tài)變化的最小自由度研究[J].光學(xué)學(xué)報,2009,29(05):1173-1176.
[64]張曉光,方光青,趙鑫媛,王少康.光纖中偏振穩(wěn)定控制的實驗研究[J].光學(xué)學(xué)報,2009,29(04):888-891.
[65]張霞,王芳,牛慧娟,許恒迎,白成林,張曉光.新型調(diào)制格式在PMD補償技術(shù)中的應(yīng)用[J].光通信研究,2009(02):1-2+9.
[66]張霞,;劬,許恒迎,王維濤,白成林,張曉光.偏振模色散自適應(yīng)補償實時控制系統(tǒng)的DSP的設(shè)計與實現(xiàn)[J].光學(xué)技術(shù),2009,35(02):175-177+180.
[67]張曉光.光纖偏振模色散的緩解與補償技術(shù)研究與進(jìn)展[J].中國激光,2009,36(03):525-539.
[68]張霞,王維濤,韓紀(jì)廣,;菥,白成林,張曉光.基于DSP的PMD補償邏輯控制模塊軟件設(shè)計[J].光通信研究,2008(06):30-33.
[69]劉慧洋,張曉光,許瑋,段高燕,席利霞.光DQPSK調(diào)制格式原理及仿真[J].光通信研究,2008(05):1-3.
[70]陳飛,劉慧洋,陸萍,張曉光.光8DPSK調(diào)制原理及仿真[J].光通信研究,2008(05):6-9.
[71]張倩,段高燕,張曉光,蔣達(dá)婭.PSO算法用于WDM系統(tǒng)多信道PMD補償?shù)难芯縖J].光子學(xué)報,2008(09):1829-1832.
[72]蘆鵬飛,張曉光,俞重遠(yuǎn),韓利紅.大學(xué)物理雙語試點班教學(xué)的研究與探討[J].大學(xué)物理,2008(07):50-52+55.
[73]陸萍,蔣達(dá)婭,段高燕,張曉光.WDM系統(tǒng)中PMD緩解與補償?shù)膸追N實用方案[J].光通信技術(shù),2008(04):23-25.
[74]許瑋,段高燕,方光青,席麗霞,張曉光.不同調(diào)制格式的偏振模色散補償性能分析[J].光學(xué)學(xué)報,2008(02):226-232.
[75]張曉光,俞重遠(yuǎn),蘆鵬飛.大學(xué)物理雙語教學(xué)的探討[J].中國大學(xué)教學(xué),2007(10):17-18+71.
[76]許瑋,段高燕,方光青,席麗霞,張曉光.偏振模色散補償系統(tǒng)中新型調(diào)制格式的研究[J].半導(dǎo)體光電,2007(05):717-720.
[77]朱進(jìn)軍,何梁,張曉光.射頻拉遠(yuǎn)模塊中軟件時鐘鎖相的實現(xiàn)方法[J].無線電工程,2007(04):57-60.
[78]王先慶,王宏祥,紀(jì)越峰,張曉光.自適應(yīng)偏振模色散補償系統(tǒng)中的控制算法[J].北京郵電大學(xué)學(xué)報,2007(01):110-113.
[79]何理,楊伯君,于麗,張曉光.基于Sagnac干涉儀的混合鎖模光纖激光器[J].光子學(xué)報,2007(01):5-8.
[80]李朝陽,于麗,張曉光,楊伯君.采用全矢量有限元法設(shè)計光子晶體光纖[J].光電子.激光,2007(01):30-35.
[81]張倩,段高燕,蔣達(dá)婭,張曉光.基于光載波抑制的光標(biāo)記交換新技術(shù)[J].光通信技術(shù),2007(01):30-31.
[82]何理,楊伯君,金潔虹,王秋國,張曉光,于麗.光子晶體光纖在有源器件中的應(yīng)用[J].光子技術(shù),2006(04):185-189.
[83]張倩,張曉光,蔣達(dá)婭,楊伯君.光纖通信波段KN晶體二次諧波相位匹配角的計算[J].光子技術(shù),2006(04):212-216.
[84]段高燕,張曉光,于麗,張茹,楊伯君.前饋PMD補償實驗中從偏振度橢球獲得差分群時延的研究(英文)[J].光子學(xué)報,2006(12):1861-1864.
[85]何理,楊伯君,張曉光,于麗.光子晶體光纖特性及光通信中的應(yīng)用[J].量子光學(xué)學(xué)報,2006(04):225-230.
[86]孫丹,張曉光.MIMO系統(tǒng)信道容量研究[J].現(xiàn)代電子技術(shù),2006(19):4-6.
[87]張嵐,段高燕,張曉光,王秋國,楊伯君.電控晶體偏振控制器分析與研究[J].光子技術(shù),2006(03):144-149.
[88]朱進(jìn)軍,段高燕,王秋國,張曉光,楊伯君.使用PSO算法的二階偏振模色散自適應(yīng)補償實驗[J].光子技術(shù),2006(03):150-155+159.
[89]段高燕,張曉光,李喜紅,于麗,張茹,楊伯君.前饋PMD補償中擬合偏振度橢球的研究[J].半導(dǎo)體光電,2006(04):451-454.
[90]段高燕,張曉光,于麗,張茹,楊伯君.偏振相關(guān)損耗對偏振模色散補償系統(tǒng)性能的影響[J].光電子·激光,2006(07):862-866.
[91]陳敏,張曉光.不求芬芳吐蕊 但為鞠躬盡瘁——專訪北京郵電大學(xué)張曉光教授[J].中國高?萍寂c產(chǎn)業(yè)化,2006(05):21-23.
[92]李朝陽,鄭遠(yuǎn),楊伯君,張曉光.2.5Gb/s偏振模色散自動補償對偏振模色散容限值的影響[J].中國激光,2006(04):489-492.
[93]張茹,韋理英,陳林,張曉光,楊伯君.用光信號偏振度衡量偏振模色散和非線性效應(yīng)對WDM系統(tǒng)的影響[J].現(xiàn)代傳輸,2006(01):55-58.
[94]何理,楊伯君,于麗,張曉光.色散非平衡sagnac環(huán)混合鎖模光纖激光器[J].現(xiàn)代傳輸,2006(01):75-78.
[95]劉玉敏,俞重遠(yuǎn),楊紅波,張曉光.光纖布喇格光柵非線性特性的研究[J].激光技術(shù),2006(01):101-103+106.
[96]李喜紅,段高燕,張曉光,張茹,楊伯君.3種一階偏振模色散模擬器[J].光通信研究,2006(01):60-62.
[97]段高燕,李喜紅,王剛,張建忠,張曉光,張茹,于麗,楊伯君.基于偏振度的偏振模色散補償中檢測信號對不同歸零碼型的響應(yīng)研究[J].光子學(xué)報,2006(01):122-125.
[98]張建忠,沈昱,周光濤,于麗,張曉光,楊伯君.粒子群優(yōu)化算法在自適應(yīng)偏振模色散補償中的性能研究[J].光學(xué)學(xué)報,2006(01):1-6.
[99]段高燕,張曉光,李喜紅,張建忠,于麗,張茹,楊伯君.偏振模色散前饋方案中偏振主態(tài)研究[J].光電子·激光,2006(01):82-85.
[100]段高燕,張曉光,于麗,張茹,楊伯君.偏振模色散緩解技術(shù)中調(diào)制碼型的實驗研究[J].光子技術(shù),2005(04):193-196.
[101]張曉光,楊伯君,于麗,鄭遠(yuǎn),俞重遠(yuǎn),張茹,席麗霞,李朝陽,劉玉敏,張霞,周光濤,沈昱,陳林,段高燕,張建忠.高速光纖通信系統(tǒng)偏振模色散自適應(yīng)補償關(guān)鍵技術(shù)[J].電信科學(xué),2005(12):13.
[102]劉玉敏,俞重遠(yuǎn),楊紅波,張娜,張曉光.優(yōu)化二元相位取樣光纖布喇格光柵及對色散和色散斜率補償?shù)膽?yīng)用[J].光子學(xué)報,2005(11):103-107.
[103]張霞,張曉光,楊伯君.偏振模色散模擬器的優(yōu)化設(shè)計及選擇[J].光子技術(shù),2005(03):145-147+150.
[104]吳兆禮,段高燕,張霞,魏志峰,張建忠,張曉光,楊伯君.偏振模色散補償?shù)淖赃m應(yīng)算法及其實現(xiàn)[J].光子技術(shù),2005(03):151-155.
[105]余先倫,楊伯君,于麗,張曉光.被動鎖模Cr4+∶YAG激光器的噪聲分析[J].中國激光,2005(09):49-52.
[106]陳林,徐江榮,楊伯君,張曉光,張茹,于麗.一種新的自適應(yīng)偏振模色散補償前饋方法[J].中國激光,2005(09):67-71.
[107]陳林,張曉光,于麗,張茹,段高燕,楊伯君.偏振模色散補償中2種偏振度取樣方式的特性[J].北京郵電大學(xué)學(xué)報,2005(04):18-22.
[108]劉玉敏,俞重遠(yuǎn),張建忠,張曉光,楊紅波,張娜,楊伯君.粒子群優(yōu)化算法用于光纖布拉格光柵綜合問題的研究[J].激光雜志,2005(04):69-70.
[109]段高燕,李喜紅,王剛,張曉光,于麗,張茹,楊伯君.采用濾波技術(shù)提高不同碼型差分群時延動態(tài)范圍研究[J].光電子·激光,2005(08):952-955.
[110]趙玉芳,楊伯君,曹軼樂,張曉光,于麗,俞重遠(yuǎn).初始啁啾對量子孤子的影響[J].北京郵電大學(xué)學(xué)報,2005(03):33-35.
[111]戴峰,楊伯君,張曉光,張茹.偏振相關(guān)損耗對光通信系統(tǒng)的影響及對其補償?shù)难芯縖J].光子技術(shù),2005(02):36-40.
[112]李喜紅,段高燕,張曉光,張茹,周光濤,楊伯君.基于Sagnac干涉法和固定分析法測量三種PMD模擬器的結(jié)果比較[J].光子技術(shù),2005(02):46-48+55.
[113]戴峰,楊伯君,張曉光,張茹.偏振相關(guān)損耗和PMD共同作用對群時延帶來的影響[J].現(xiàn)代有線傳輸,2005(03):59-62.
[114]曹軼樂,楊伯君,于麗,張曉光.色散對被動鎖模飛秒固體激光器輸出脈沖的影響[J].激光與紅外,2005(06):400-403.
[115]王剛,段高燕,吳兆禮,李喜紅,張建忠,張曉光.采用粒子群優(yōu)化算法的二階偏振模色散自適應(yīng)補償實驗[J].光通信技術(shù),2005(06):28-30.
[116]吳兆禮,張曉光,段高燕,王剛,李喜紅,張曉光,楊伯君.粒子群優(yōu)化算法在PMD自適應(yīng)補嘗中的應(yīng)用[J].現(xiàn)代有線傳輸,2005(02):50-54.
[117]陳林,余先倫,張曉光,鄭遠(yuǎn),張茹,周光濤,沈昱,楊伯君.二階偏振模色散高速光纖通信的影響及補償[J].量子電子學(xué)報,2005(02):272-276.
[118]劉玉敏,俞重遠(yuǎn),楊紅波,張曉光,楊伯君.長周期啁啾光纖光柵級聯(lián)作為波分復(fù)用隔離濾波器的數(shù)值研究[J].光子學(xué)報,2005(04):516-519.
[119]張建忠,張曉光,于麗,席麗霞,沈昱,周光濤,張娜,吳斌,苑鐵成.40Gbit/s OTDM系統(tǒng)中二階偏振模色散自適應(yīng)補償技術(shù)研究[J].光子學(xué)報,2005(04):561-565.
[120]陳林,張曉光,周光濤,鄭遠(yuǎn),沈昱,張茹,于麗,楊伯君.偏振度作為反饋信號進(jìn)行偏振模色散補償?shù)难芯縖J].光學(xué)學(xué)報,2005(04):443-448.
[121]戴峰,張曉光,楊伯君.相位敏感放大器在脈沖壓縮中應(yīng)用的探討[J].光通信研究,2005(01):61-63.
[122]于麗,張曉光,周光濤,席麗霞,張茹,楊伯君.以啁啾光纖光柵為補償器的自適應(yīng)PMD補償?shù)膶嶒炑芯縖J].北京郵電大學(xué)學(xué)報,2005(01):51-54.
[123]周光濤,張曉光,席麗霞,于麗,沈昱,張建忠,張娜,吳斌,苑鐵成,張洪明,徐坤,楊伯君,林金桐.40Gb/s光時分復(fù)用系統(tǒng)中兩級偏振模色散自適應(yīng)補償實驗研究[J].光學(xué)學(xué)報,2005(01):15-20.
[124]劉玉敏,俞重遠(yuǎn),黃聰穎,張曉光.偏振度作為反饋信號的偏振模色散補償系統(tǒng)的性能研究[J].中國激光,2005(01):79-82.
[125]余先倫,李載玉,楊伯君,張曉光.Cr4+:YAG晶體作為激光器增益介質(zhì)的特性研究[J].量子電子學(xué)報,2004(06):811-814.
[126]沈昱,周亞萍,周光濤,鄭遠(yuǎn),張建忠,陳林,張曉光,于麗,席麗霞,楊伯君,黃山,陳碩,趙華鳳,姚敏玉.動態(tài)偏振模色散補償?shù)淖赃m應(yīng)算法及實現(xiàn)[J].光子學(xué)報,2004(11):1351-1355.
[127]苑鐵成,于麗,張曉光,張建忠,張娜,段高燕,楊伯君.增強RZ碼DOP檢測范圍和靈敏度的方法[J].光子技術(shù),2004(04):225-227.
[128]張曉光,于麗,鄭遠(yuǎn),沈昱,周光濤,席麗霞,陳林,張建忠,苑鐵成,楊伯君.可補償二階偏振模色散的兩級自適應(yīng)補償器研究[J].中國激光,2004(11):1391-1397.
[129]趙玉芳,楊伯君,張曉光,于麗.孤子壓縮態(tài)在光纖中的特性研究[J].量子電子學(xué)報,2004(05):606-609.
[130]張霞,張曉光.光纖偏振模散隨波長變化特性的研究[J].現(xiàn)代有線傳輸,2004(05):38-40.
[131]席麗霞,張曉光,于麗,沈昱,周光濤,張建忠,張娜,吳斌,苑鐵成,楊伯君.二階偏振模色散自適應(yīng)補償?shù)年P(guān)鍵技術(shù)[J].光電子·激光,2004(08):924-928.
[132]張娜,俞重遠(yuǎn),周光濤,劉玉敏,張建忠,王磊,張曉光.傳輸光脈沖寬度對10Gb/s PMD補償系統(tǒng)影響的實驗分析[J].光子技術(shù),2004(03):147-150.
[133]陳林,張茹,張曉光,于麗,段高艷,張建忠,鄭遠(yuǎn),楊伯君.基于偏振度橢球的PMD補償方法的研究[J].現(xiàn)代有線傳輸,2004(03):29-32.
[134]余先倫,曹軼樂,楊伯君,張曉光.Cr4+∶YAG激光器的自鎖模條件分析[J].激光與紅外,2004(03):174-177.
[135]余先倫,楊伯君,余重遠(yuǎn),張曉光.在Cr4+:YAG激光器中利用SBR鎖模的分析研究[J].激光與光電子學(xué)進(jìn)展,2004(06):21-24.
[136]張曉光,席麗霞,于麗,周光濤,張建忠,張娜,吳斌,苑鐵成,陳林,張洪明,陳碩,姚敏玉,楊伯君.Two-stage adaptive PMD compensation in 40-Gb/s OTDM optical communication system[J].Chinese Optics Letters,2004(06):316-319.
[137]劉開賢,張霞,趙京璽,黃永清,張曉光,任曉敏.用龐加萊球法測量二階偏振模色散[J].光學(xué)學(xué)報,2004(05):583-586.
[138]劉玉敏,俞重遠(yuǎn),楊紅波,張娜,張曉光,楊伯君.級聯(lián)多光纖F-P腔可調(diào)諧濾波器的研究[J].光子技術(shù),2004(02):81-86.
[139]陳林,張曉光,張茹,于麗,楊伯君.偏振模色散對多信道光纖通信系統(tǒng)信號的影響[J].光子學(xué)報,2004(04):443-447.
[140]周光濤,張曉光,沈昱,于麗,鄭遠(yuǎn),李朝陽,楊伯君.10Gb/s光通信傳輸系統(tǒng)中一階PMD自適應(yīng)補償實驗[J].光子學(xué)報,2004(04):448-451.
[141]余先倫,楊伯君,余重遠(yuǎn),張曉光.典型Cr4+:YAG激光器的色散特性分析研究[J].激光雜志,2004(02):23-25.
[142]席麗霞,張曉光,鄭遠(yuǎn),沈昱,周光濤,楊伯君.基于DOP反饋的10Gb/s系統(tǒng)PMD自適應(yīng)補償實驗[J].半導(dǎo)體光電,2004(01):46-48.
[143]陳林,楊伯君,張茹,張曉光.DWDM光纖通信系統(tǒng)中PMD及補償?shù)难芯縖J].光通信研究,2004(01):37-38+51.
[144]周光濤,沈昱,李朝陽,鄭遠(yuǎn),張曉光,楊伯君.偏振模色散(PMD)自適應(yīng)反饋補償系統(tǒng)[J].光通信研究,2004(01):41-43.
[145]段高燕,楊伯君,張曉光,于麗.被動鎖模Cr4+:YAG激光器的設(shè)計研究[J].現(xiàn)代有線傳輸,2004(01):29-32.
[146]余先倫,羅映祥,楊伯君,張曉光.Cr4+:YAG晶體在固體激光器中的應(yīng)用研究[J].激光雜志,2004(01):15-17.
[147]趙玉芳,楊伯君,張曉光,于麗,曹軼樂,俞重遠(yuǎn).量子通信中遠(yuǎn)程傳態(tài)的進(jìn)展[J].光子技術(shù),2004(01):23-26.
[148]王磊,劉玉敏,俞重遠(yuǎn),楊紅波,張娜,張曉光.實驗環(huán)路PMD統(tǒng)計特性的研究[J].光子技術(shù),2004(01):36-39.
[149]陳林,楊伯君,張曉光,于麗,張茹.偏振模色散和非線性效應(yīng)對WDM系統(tǒng)中RZ碼的影響[J].光電子·激光,2004(01):53-56.
[150]張曉光,于麗,鄭遠(yuǎn),李朝陽,周光濤,沈昱,楊伯君,王宏祥,王嵐,紀(jì)越峰.光纖通信系統(tǒng)中偏振模色散自適應(yīng)補償實驗研究[J].光子學(xué)報,2003(12):1474-1478.
[151]鄭遠(yuǎn),楊伯君,張曉光.一種提高40Gb/s非歸零碼系統(tǒng)中偏振度橢球?qū)ζ衲I㈧`敏度的新方法[J].中國激光,2003(12):1090-1094.
[152]劉玉敏,俞重遠(yuǎn),張曉光,于麗,楊伯君.一種新型的可調(diào)諧非線性啁啾光纖光柵制造技術(shù)[J].光通信研究,2003(05):71-72+78.
[153]李朝陽,鄭遠(yuǎn),李春云,楊伯君,張曉光.一種簡單實用低插損的PMD模擬器[J].高技術(shù)通訊,2003(08):19-22.
[154]劉玉敏,俞重遠(yuǎn),張曉光,于麗,楊伯君.可調(diào)諧非線性啁啾光纖光柵技術(shù)[J].光子技術(shù),2003(03):5-10.
[155]于麗,周光濤,張曉光,楊伯君,鄭遠(yuǎn),沈昱,劉玉敏.利用高雙折射啁啾光纖光柵補償偏振模色散[J].光電子·激光,2003(07):721-724.
[156]李朝陽,鄭遠(yuǎn),李春云,楊伯君,張曉光.2.5Gbit/s偏振模色散自動補償試驗系統(tǒng)[J].高技術(shù)通訊,2003(06):5-8.
[157]張曉光,楊伯君,俞重遠(yuǎn).非線性薛定諤方程數(shù)值解法中傅立葉正逆變換選取的討論[J].計算物理,2003(03):267-272.
[158]趙玉芳,楊伯君,張曉光,于麗.有損光纖中孤子壓縮效應(yīng)[J].量子光學(xué)學(xué)報,2003(01):32-36.
[159]鄭遠(yuǎn),劉玉敏,楊伯君,張曉光.用瓊斯傳輸矩陣法研究二階偏振模色散的統(tǒng)計特性[J].中國激光,2003(01):45-48.
[160]趙玉芳,楊伯君,張曉光.光纖損耗對孤子壓縮態(tài)的影響[J].量子光學(xué)學(xué)報,2002(S1):15-16.
[161]鄭遠(yuǎn),于麗,楊伯君,張曉光.能夠補償二階偏振模色散的三階段偏振模色散補償器[J].物理學(xué)報,2002(12):2745-2749.
[162]鄭遠(yuǎn),李朝陽,劉秀敏,李錫忠,李榮華,楊伯君,張曉光.偏振模色散對線性系統(tǒng)脈寬的影響[J].中國激光,2002(10):900-904.
[163]鄭遠(yuǎn),劉玉敏,李朝陽,楊伯君,張曉光.偏振模色散后補償器的工作方式分析[J].光電子·激光,2002(09):934-937.
[164]鄭遠(yuǎn),李朝陽,劉秀敏,李錫忠,李榮華,楊伯君,張曉光.偏振模色散統(tǒng)計特性的研究[J].中國激光,2002(08):687-690.
[165]劉秀敏,李朝陽,李榮華,楊伯君,張曉光.用Sagnac干涉法和固定分析法測量光纖偏振模的色散[J].中國激光,2002(05):455-458.
[166]李錫忠,王永剛,楊伯君,張曉光,俞重遠(yuǎn).高速光通信中的色散管理孤子[J].飛通光電子技術(shù),2002(01):51-56.
[167]劉秀敏,李朝陽,李榮華,楊伯君,張曉光.偏振模色散補償系統(tǒng)[J].半導(dǎo)體光電,2001(06):386-389.
[168]李錫忠,張曉光,王永剛,楊伯君,俞重遠(yuǎn).密集型色散管理模式中DM孤子傳輸特性分析[J].光電子·激光,2001(12):1271-1275.
[169]劉秀敏,楊伯君,張曉光.波分復(fù)用系統(tǒng)中偏振模色散特性的研究[J].中國激光,2001(12):1103-1107.
[170]李朝陽,鄭遠(yuǎn),劉秀敏,李榮華,李錫忠,楊伯君,張曉光.基于梳狀色散緩變光纖鏈的孤子脈沖壓縮研究[J].飛通光電子技術(shù),2001(04):219-222.
[171]劉秀敏,李朝陽,李榮華,楊伯君,張曉光.偏振復(fù)用孤子測量差分群時延[J].半導(dǎo)體光電,2001(05):331-334.
[172]李朝陽,劉秀敏,李榮華,楊伯君,張曉光,于麗,任曉敏.偏振模色散的測量及補償[J].光通信研究,2001(05):52-55.
[173]李朝陽,劉秀敏,李榮華,楊伯君,張曉光,于麗,任曉敏.測量偏振模色散的新方法[J].光電子·激光,2001(09):920-922.
[174]張曉光,林寧,張濤,劉秀敏,楊伯君,于麗.預(yù)啁啾10GHz、38km色散管理孤子的傳輸實驗[J].光子學(xué)報,2001(07):813-817.
[175]俞重遠(yuǎn),張曉光,劉秀敏.三芯非線性光纖耦合器中的短脈沖光開關(guān)[J].物理學(xué)報,2001(05):904-909.
[176]劉秀敏,楊伯君,張曉光.偏振模色散對NRZ碼和RZ碼系統(tǒng)影響的研究[J].光通信研究,2001(02):39-42.
[177]張曉光,林寧,劉秀敏,俞重遠(yuǎn),楊伯君.光纖-光纖光柵脈沖壓縮器的研究[J].光電子·激光,2001(04):329-333.
[178]林寧,楊伯君,張曉光,劉秀敏.脈沖初始啁啾對色散管理孤子傳輸性能的影響[J].光電子·激光,2001(02):185-187+203.
[179]林寧,楊伯君,張曉光,劉秀敏.增益開關(guān)DFB激光器啁啾消除技術(shù)的研究[J].半導(dǎo)體光電,2000(06):394-398.
[180]林寧,楊伯君,張曉光,劉秀敏.利用線性啁啾光纖光柵進(jìn)行色散補償?shù)睦碚撗芯縖J].半導(dǎo)體光電,2000(04):283-285+290.
[181]林寧,楊伯君,張曉光.消除光纖光柵振蕩特性對光通信系統(tǒng)影響的方法[J].光電子·激光,2000(04):411-414.
[182]劉秀敏,張曉光,林寧,楊伯君.用同步調(diào)制方法降低偏振模色散影響的理論研究[J].光子學(xué)報,2000(08):722-725.
[183]林寧,張曉光,劉秀敏,楊伯君.光纖光柵耦合系數(shù)對其色散補償性能的影響[J].光子學(xué)報,2000(06):527-531.
[184]林寧,張曉光,俞重遠(yuǎn),楊伯君.利用線性啁啾光纖光柵進(jìn)行脈沖壓縮的研究[J].光通信研究,2000(02):49-54.
[185]林寧,張曉光,俞重遠(yuǎn),楊伯君.線性光纖光柵消啁啾方法的研究[J].光電子·激光,2000(01):79-82.
[186]林寧,洪小斌,張曉光,劉秀敏,張濤,楊伯君.色散補償技術(shù)中超短光脈沖傳輸特性的研究[J].光子學(xué)報,1999(12):1091-1095.
[187]余建軍,楊伯君,于麗,李朝暉,張曉光,管克儉.光孤子傳輸和誤碼測量的實驗系統(tǒng)[J].中國激光,1999(09):819-824.
[188]余建軍,楊伯君,于麗,李朝暉,張曉光,管克儉.光孤子誤碼測量的實驗系統(tǒng)[J].電子學(xué)報,1999(07):123-124.
[189]余建軍,楊伯君,李朝暉,于麗,張曉光,管克儉.2.5Gb/s,52km 的光孤子通信實驗系統(tǒng)[J].高技術(shù)通訊,1998(07):18-21.
[190]余建軍,楊伯君,管克儉,張曉光,楊啟敏.基于不同色散光纖的光纖鏈的孤子傳輸研究[J].光學(xué)學(xué)報,1998(04):63-67.
[191]張曉光,王永鋼.簡明光波導(dǎo)模式理論[J].光通信研究,1997(04):27-31+40.
[192]余建軍,張曉光,楊伯君,管克檢.負(fù)啁啾脈沖在正負(fù)色散光纖中傳輸特性研究[J].光學(xué)學(xué)報,1997(10):144-149.
[193]余建軍,張曉光,楊伯君.正色散光纖消啁啾的理論研究[J].光電子·激光,1997(03):53-56.
[194]余建軍,楊啟敏,牟若梅,張曉光,楊伯君,管克儉.正常色散光纖消啁啾的孤子傳輸實驗[J].高技術(shù)通訊,1997(06):21-23.
[195]余建軍,楊伯君,張曉光.啁啾脈沖在正常色散光纖中頻域特性實驗研究[J].光子學(xué)報,1997(04):345-348.
[196]張曉光,余建軍,楊伯君.孤子源啁啾對光孤子傳輸?shù)挠绊懸约跋钡姆椒╗J].光子學(xué)報,1997(03):224-232.
[197]余建軍,張曉光,楊啟敏,牟若梅,楊伯君.正常色散光纖消啁啾的孤子傳輸實驗[J].光通信研究,1996(04):8-11.
[198]張曉光,王永鋼.利用波疊加觀點討論光波導(dǎo)模式的物理意義[J].工科物理,1996(04):14-16.
[199]余建軍,楊伯君,余建國,張曉光.光孤子傳輸實驗研究[J].光電子·激光,1996(05):268-272+267.
[200]張曉光.自聚焦光纖模間色散的射線解法[J].光通信技術(shù),1996(03):223-225.
[201]張曉光,黃瓊,萬仁浚.光程、費馬原理和光纖的模式色散[J].大學(xué)物理,1996(04):4-6+3.
[202]余建軍,張曉光,楊伯君.利用二次諧波檢測光孤子脈沖對晶體的考慮[J].光通信研究,1996(01):14-18.
[203]張曉光.關(guān)于KDP晶體在電光效應(yīng)中兩個二階軸對稱性的討論[J].大學(xué)物理,1996(03):7-10.
[204]張曉光,陳雷.有損色散漸變光纖中孤子串的產(chǎn)生[J].光通信研究,1995(01):7-12.
[205]張曉光,郭萬穩(wěn),張藍(lán).光纖孤子通信的計算機模擬[J].光通信研究,1994(03):20-25.
[206]張曉光,萬仁浚.普通物理教材中氦氖能級圖的一些問題[J].工科物理,1994(03):9-10.
發(fā)表中文會議論文:
[1]顏菲,張曉光. 基于LDPC編碼的前向糾錯在偏振模色散補償系統(tǒng)中的應(yīng)用研究[C]..第九屆全國光電技術(shù)學(xué)術(shù)交流會論文集(下冊).2010:379-382.
[2]王文楠;朱進(jìn)軍;孫丹;方光青;張曉光;楊伯君. 基于DSP的偏振模色散補償實驗[C]..第一屆中國高校通信類院系學(xué)術(shù)研討會論文集.電子工業(yè)出版社,2007:570-575.
[3]王茹婷,張曉光,蔣達(dá)婭. FEC在高速光纖通信系統(tǒng)中的應(yīng)用[C]..第一屆中國高校通信類院系學(xué)術(shù)研討會論文集.電子工業(yè)出版社,2007:756-759.
[4]方光青;張曉光;許瑋;席麗霞;段高燕. 差分相移鍵控格式產(chǎn)生與解調(diào)的實驗研究[C]..第一屆中國高校通信類院系學(xué)術(shù)研討會論文集.電子工業(yè)出版社,2007:879-884.
[5]唐先鋒,席麗霞,張曉光. 差分相移鍵控調(diào)制信號的相位再生技術(shù)[C]..第一屆中國高校通信類院系學(xué)術(shù)研討會論文集.電子工業(yè)出版社,2007:957-961.
[6]張妍,張曉光,王永鋼. 幾種改進(jìn)型的粒子群優(yōu)化算法[C]..第一屆中國高校通信類院系學(xué)術(shù)研討會論文集.電子工業(yè)出版社,2007:885-889.
[7]何理; 楊伯君; 張金勝; 于麗; 張曉光. 被動鎖模摻餌光纖激光器的研究[C].第十二屆全國量子光學(xué)學(xué)術(shù)會議論文摘要集.《量子光學(xué)學(xué)報》編輯部,2006:42-43.
[8]程俊強;俞重遠(yuǎn);蔣達(dá)婭;張曉光. 光通信系統(tǒng)中鈮酸鉀晶體的激光倍頻特性[C]..第十七屆全國激光學(xué)術(shù)會議論文集.科學(xué)出版社,2005:324-327.
[9]劉玉敏; 俞重遠(yuǎn); 張曉光; 楊伯君. 一種新型的可調(diào)諧偏振態(tài)色散延遲線的研究[C].第三屆中國光通信技術(shù)與市場研討會論文集.2003:315-322.
[10]張曉光. 光纖偏振模色散的兩級自適應(yīng)補償器[C]..北京光電子學(xué)青年學(xué)術(shù)論壇論文集.2003:13-20.
[11]陳林; 楊伯君; 張曉光; 張茹; 于麗. 35.8×40Gbit/s波分復(fù)用光纖通信系統(tǒng)中偏振模色散的研究[C].全國第十一次光纖通信暨第十二屆集成光學(xué)學(xué)術(shù)會議(OFCIO’2003)論文集.人民郵電出版社,2003:208-212.
[12]席麗霞; 張曉光; 鄭遠(yuǎn); 沈昱; 周光濤. 基于DOP取樣的10Gbit/s系統(tǒng)PMD自適應(yīng)補償?shù)膶嶒瀃C].全國第十一次光纖通信暨第十二屆集成光學(xué)學(xué)術(shù)會議(OFCIO’2003)論文集.人民郵電出版社,2003:411-415.
[13]劉玉敏; 鄭遠(yuǎn); 俞重遠(yuǎn); 張曉光. 級聯(lián)長周期啁啾光纖光柵作為波分復(fù)用隔離濾波器的研究[C]. 全國第十一次光纖通信暨第十二屆集成光學(xué)學(xué)術(shù)會議(OFCIO’2003)論文集.人民郵電出版社,2003:782-786.
[14]趙玉芳,楊伯君,張曉光. 光纖損耗對孤子壓縮態(tài)的影響[C].第十屆全國量子光學(xué)學(xué)術(shù)報告會論文論文集.量子光學(xué)學(xué)報編輯部,2002:20-21.