在国际国内核心期刊及会议上发表相关研究论文30余篇,下面列出发表的主要论文: [1] Liu Feng-nian(刘丰年), Jia Xiu-jie(贾秀杰), Liu Yan-ge(刘艳格), Yuan Shu-zhong(袁树忠), Dong Xiao-yi(董孝义)“Enhancing coherent combining efficiency via choosing appropriate lasing wavelength in a Michelson compound cavity based on two 3dB fiber loop mirrors and one fiber Bragg grating”Chinese Physics Letters, 2007, 24 (4): 929-932 SCI: 158FS [2] Fengnian Liu , Bangcai Huang, Bo Liu, Guiyun Kai,Shuzhong Yuan, Xiaoyi Do“Investigation on characteristics of self-organization in Mach-Zehnder Erbium-doped fibre laser cavity” Chinese Optics Letters, 2008, 6(3):EI: [3] Fengnian Liu, Xiujie Jia, Yange Liu, Guiyun Kai, Shuzhong Yuan Xiaoyi Dong“Realization of coherent polarization locking of two orthogonal-polarization beams in a Mach-Zehnder compound cavity based on the polarization-dependence losses of a polarizer” SPIE-INT SOC OPTICAL ENGINEERING, Nov. 21, 2007,武汉,Vol. 6781, P:78125. SOC: BHF73,EI [4] Fengnian Liu, Lingling Xu, Bangcai Huang, Bo Liu, Wande Fan, Shuzhong Yuan,“EXCEEDED 1W AVERAGE POWER, 1KW PEAK POWER AND ALL-FIBER NANOSECOND Yb-DOPED AMPLIFIER” SPIE-INT SOC OPTICAL ENGINEERING, Oct. 26, 2008,杭州,Vol. 7134-134,EI [5]刘丰年徐玲玲范万德黄榜才李未然刘波刘艳格袁树忠“1064nm小信号纳秒脉冲掺Yb光纤放大器的实验研究”全国第十三次光纤通信暨第十四届集成光学学术会议论文集, 2007年南京 [6]Fengnian, Liu; Xiujie, Jia; Xin, Guo; Na, Li; Wenping, Zhang; Di, Zhang; Changyun, Li”The Effects of Intra-Cavity Losses on Coherent Combining in a Mach-Zehnder Erbium-Doped Fiber Laser Cavity”,Journal of Nanoelectronics and Optoelectronics, Volume 7, Number 2, March 2012 , pp. 195-198,SCI,EI [7]刘丰年徐玲玲范万德黄榜才姜明顺刘波刘艳格开桂云袁树忠“全光纤瓦级纳秒脉冲掺Yb放大器”光子学报2009 Vol. 38 (12): 3057-3060, [8]刘丰年孔令芳果鑫“马赫-曾德复合腔激光器自组织相干合成过程中泄露功率的输出特性” 激光与红外2009 Vol. 39 (12):1278-1282 [9]Fengnian Liu、Xin Guo etal.,“Experimental Research on Preamplifier for High Power Yb-doped Fiber Pulse Amplification”2010上海亚太光通信论坛会议《Proceeding of SPIE ACP》EI [10]刘丰年,王文亮,冷进勇.全光纤环形腔多程脉冲放大特性[J].中国激光,2013,40(07):39-42. [11]刘丰年,张文平,果鑫,文鸿,徐勇,唐伟.低重复频率激光脉冲放大的时域理论研究[J].激光与红外,2013,43(06):632-635. [12] Jia Xiu-Jie, Liu Feng-Nian, Fu Sheng-Gui, Liu Yan-Ge, Yuan Shu-Zhong,Dong Xiao-Y “Realization of an efficient coherent combination via Michelson cavity ”CHINESE PHYSICS 2007, 16 (10): 2993-2997 SCI: 220EY [13] Jia Xiu-Jie, Liu Yan-Ge, Liu Feng-Nian, Fu Sheng-Gui, Liu Bo, Yuan Shu-Zhong, Kai Gui-Yun, Dong Xiao-Y “Realization of an all-fibre self-organization intra-cavity coherent erbium-doped fibre laser” Chinese Physics Letters 2007, 24 (10) 2842-2845 SCI: 215LW [14] JIA Xiu-jie, LIU Feng-nian, Fu Sheng-gui, Zhang Jian, Liu Yan-ge, Guo Zhan-cheng, Yuan Shu-zhong, Kai Gui-yun, Dong Xiao-yi, “Novel intra-cavity self-organization coherent Erbium-doped fiber laser”, Optoelectronics Letters, 2007, 3(2):0106-0108 [15] X J Jia, F N Liu, S G Fu, J Zhang, et al., “A novel all-fiber self-organization coherent erbium-doped fiber laser”, in Fundamental Problems of Optoelectronics and Microelectronics III. 2007: SPIE: p.6595 [16]贾秀杰,刘丰年,付圣贵,张建,等,“新型全光纤化自组织相干合成掺铒光纤激光器”,光电子·激光,2006, 17: 203-206(EI 070710427543) [17]刘丰年,杨瑞,周丹.试论小波滤噪在布里渊光纤传感技术中的应用[J].信息通信,2017(04):39-40. [18]刘丰年,李娜,果鑫,张文平,徐勇,张笛.光纤布拉格光栅的分析及其剥层算法重构[J].湖南工业大学学报,2011,25(06):93-96. [19]刘丰年,张文平,文鸿,果鑫,徐勇,唐伟,张笛.双程脉冲激光放大器动态输出特性研究[J].湖南工业大学学报,2012,26(05):67-70+108. [20]果鑫,刘丰年,李娜,孔令芳,李长云.1064nm脉冲激光前置放大器研究[J].激光与红外,2011,41(02):150-154. [21]张文平,刘丰年,果鑫,徐勇,张笛,唐伟.双程激光脉冲放大系统的建模及仿真研究[J].激光技术,2013,37(06):838-842. [22]张文平,刘丰年,果鑫,徐勇,张笛.多程脉冲激光放大系统的建模及仿真研究[J].湖南工业大学学报,2013,27(04):80-84. [23]唐伟,刘丰年,陈崇帮,欧新良,王苏.改进的基尼指数在文本分类中的应用研究[J].长沙大学学报,2013,27(05):55-57+63. [24]张笛,刘丰年,李蓓,张文平,徐勇.基于回跳电压的动力电池SOC估算方法[J].湖南工业大学学报,2013,27(02):59-62. [25]徐勇,果鑫,刘丰年,文鸿,张文平,李长云.一种基于模糊Q学习算法的认知无线电频谱分配策略[J].湖南工业大学学报,2013,27(02):74-78+88. [26]王苏,马革新,刘丰年,唐伟.关于个性化搜索引擎中用户兴趣模型的研究[J].长沙大学学报,2013,27(05):64-66. [27]孔令芳,果鑫,李娜,刘丰年,李长云.弱反馈下脉冲掺镱放大器输出特性的计算机仿真[J].湖南工业大学学报,2010,24(05):54-57. [28] Hong Wen, Kang Geng, Qinghui Chen, Rui Deng, Ming Chen, Tiezhu Zong, Kunping Luo, andFengnian Liu. A Simple Blind Sampling Frequency Offset Estimation Scheme for Short-Reach DD-OFDM Systems. IEEE Photonics Journal, (2020).12(6), 1-10. [29]刘丰年,翁艳彬,刘志,刘春梅,果鑫,黄鑫,张威.基于模分与波分混合复用的直接检测光纤传输系统研究[J].光通信技术:2022(4)1-9. |