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高功率全正色散锁模掺Yb3+双包层光纤飞秒激光器
引用本文:刘华刚,黄见洪,翁文,李锦辉,郑晖,戴殊韬,赵显,王继扬,林文雄.高功率全正色散锁模掺Yb3+双包层光纤飞秒激光器[J].物理学报,2012,61(15):154210-154210.
作者姓名:刘华刚  黄见洪  翁文  李锦辉  郑晖  戴殊韬  赵显  王继扬  林文雄
作者单位:1. 中国科学院福建物质结构研究所,中科院光电材料化学与物理重点实验室,福州350002
2. 山东大学晶体材料研究所,济南,250100
基金项目:国家自然科学基金重点项目(批准号: 91022034)和福建省科技重大专项(批准号: 2010HZ0005-1)资助的课题.
摘    要:以芯径为30 μm的掺Yb3+双包层光纤为增益介质, 利用非线性偏振旋转技术以及光栅-小孔结构组成的光谱滤波器提供有效的振幅调制, 实现了稳定的全正色散耗散孤子锁模运转. 激光器直接输出重复频率为76.6 MHz、平均功率达6.3 W的超短脉冲, 单脉冲能量可达82 nJ. 直接输出脉冲宽度为1.33 ps, 经腔外压缩后的宽度为377 fs. 通过调节光栅角度还实现了输出脉冲中心波长在1025—1078 nm范围内的调谐.

关 键 词:超快激光  双包层光纤  非线性偏振旋转  耗散孤子锁模
收稿时间:2011-10-14

High power all-normal-dispersion mode-locked Yb3+-doped double-clad fiber femtosecond laser
Liu Hua-Gang,Huang Jian-Hong,Weng Wen,Li Jin-Hui,Zheng Hui,Dai Shu-Tao,Zhao Xian,Wang Ji-Yang,Lin Wen-Xiong.High power all-normal-dispersion mode-locked Yb3+-doped double-clad fiber femtosecond laser[J].Acta Physica Sinica,2012,61(15):154210-154210.
Authors:Liu Hua-Gang  Huang Jian-Hong  Weng Wen  Li Jin-Hui  Zheng Hui  Dai Shu-Tao  Zhao Xian  Wang Ji-Yang  Lin Wen-Xiong
Institution:1. Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 35002, China;2. Institute of Crystal Materials, Shandong University, Ji'nan 250100, China
Abstract:A stable all-normal-dispersion dissipative-soliton mode-locked laser is demonstrated with a Yb3+-doped large-mode-area double-clad gain fiber, and nonlinear polarization evolution and spectral filtering composed of a grating and an aperture are exploited to produce sufficient amplitude modulation to shape pulses of this laser. The laser generates chirped pulses at a 76.6 MHz repetition rate, with an average power of 6.3 W, and a single pulse energy of 82 nJ. Pulse duration of the direct output pulse is 1.33 ps and it can be dechirped to 377 fs after externally compressed. By adjusting the grating, the central wavelength of the output pulses can also be tuned from 1025 nm to 1078 nm.
Keywords:ultrafast laser  double-clad fiber  nonlinear polarization evolution  dissipative soliton mode-locking
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