Qiubai Yang 1,2Yan Jiao 2Chunlei Yu 2,3,*Chongyun Shao 2[ ... ]Lili Hu 2,3,**
Author Affiliations
Abstract
1 School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China
2 Key Laboratory of High Power Laser Materials, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
3 Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China
In this work, a heavily Er-doped fiber with an 8 µm core diameter and a numerical aperture of 0.13 was prepared by the modified chemical vapor deposition (MCVD) technique combined with the sol-gel method. The background loss and absorption coefficient at 1530 nm were measured to be 20 dB/km and 128 dB/m, respectively. Thanks to the sol-gel method, the fiber showed a good doping homogeneity, which was confirmed through unsaturable absorption measurement. The net gains of three 25, 45, and 75-cm-long fibers were measured in the range of 1520 to 1600 nm, and the highest gain reached above 23 dB at both 1530 and 1560 nm in 25 and 75-cm-long fibers, respectively. The short-cavity laser performance was measured using centimeter-scale fibers. The maximum output power of 12 mW was demonstrated in a 6.5-cm-long active fiber with a slope efficiency of 20.4%. Overall, the prepared heavily Er-doped silica fiber is a promising item to be applied in a high-repetition-rate or single-frequency fiber laser.
erbium-doped fiber short-cavity fiber laser sol-gel method 
Chinese Optics Letters
2021, 19(11): 110603
张磊 1,*楼风光 1王孟 1于春雷 1,3[ ... ]巩马理 2
作者单位
摘要
1 中国科学院上海光学精密机械研究所强激光材料重点实验室, 上海 201800
2 清华大学精密仪器系, 北京 100084
3 国科大杭州高等研究院, 浙江 杭州 310024
同带泵浦是提升单纤输出能力的有效手段。在传统双包层光纤研究的基础上,为了进一步提高涂覆层的耐受性,本课题组制备了适用于同带泵浦的三包层大模场掺镱光纤,使大部分泵浦光束缚在含氟石英层内传输,大大减轻了泵浦光对低折射率涂层的冲击。基于所研制的三包层光纤搭建了全光纤化主控振荡功率放大器,实现了9010 W激光输出,激光中心波长为1080 nm,斜率效率为80.5%。三包层光纤的使用对万瓦级以上高功率激光光纤的长期可靠运行具有重要意义。
光纤光学 掺镱光纤 三包层光纤 同带泵浦 主振荡功率放大器 
中国激光
2021, 48(13): 1315001
作者单位
摘要
1 中国科学院上海光学精密机械研究所强激光材料重点实验室, 上海 201800
2 中国科学院大学, 北京 100049
近年来,掺镱大模场光子晶体光纤由于在高峰值功率皮秒超快激光放大器方面的重要应用而受到广泛关注。简要分析了掺镱大模场光子晶体光纤的研制难点,介绍了国内外掺镱大模场光子晶体光纤的研究进展,以及应用于掺镱大模场光子晶体光纤制备的掺镱石英玻璃芯棒制备方法及其光学、光谱性能,重点介绍了中国科学院上海光学精密机械研究所基于溶胶-凝胶工艺制备大直径、低数值孔径掺镱石英玻璃芯棒玻璃,以及大模场掺镱光子晶体光纤的制备及其用于皮秒脉冲激光放大的研究进展。最后对掺镱大模场光子晶体光纤的研发及应用进行了总结及展望。
光纤光学 掺镱石英玻璃 大模场面积光子晶体光纤 皮秒脉冲激光放大 
激光与光电子学进展
2019, 56(17): 170602
Meng Wang 1,2Fan Wang 1,2Suya Feng 1,*Chunlei Yu 1,**[ ... ]Lili Hu 1,***
Author Affiliations
Abstract
1 Key Laboratory of Materials for High Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 University of Chinese Academy of Sciences, Beijing 100049, China
A large-mode-area (LMA) ytterbium-doped photonic crystal fiber (PCF) with core NA of 0.034 and core diameter of 50 μm was made by the stack-and-draw technique. The core is formed by Yb3+/Al3+/F /P5+ co-doped silica glass containing 0.09 mol% Yb2O3 with an absorption coefficient at 976 nm up to 3.2 dB/m. The core glass with homogeneous distribution of Yb3+ ions and refractive index difference of 4 × 10 4 compared with pure silica was prepared by the sol-gel method and heat homogenization at 2000°C. Laser power amplification of this LMA PCF was studied using a seed source of 21 ps pulse duration and 48.7 MHz repetition rate at 1030 nm wavelength. With pump power of 520 W, a maximum 272 W (266 kW peak power) quasi-single-mode laser output with M2 of 2.2 was achieved in a 4.7 m fiber length bent at a diameter of 47 cm with slope efficiency of 52%, and no obvious mode instability, stimulated Raman scattering, or thermal damage on the end facet of the fiber were observed.
140.3538 Lasers, pulsed 140.3615 Lasers, ytterbium 140.3510 Lasers, fiber 160.5690 Rare-earth-doped materials 
Chinese Optics Letters
2019, 17(7): 071401
李学文 1,2于春雷 2,3,*胡丽丽 2,3沈辉 1[ ... ]周军 1,2
作者单位
摘要
1 中国科学院上海光学精密机械研究所上海市全固态激光器与应用技术重点实验室, 上海 201800
2 中国科学院大学材料与光电研究中心, 北京 100049
3 中国科学院上海光学精密机械研究所强激光材料重点实验室, 上海 201800
基于自主研制的均匀掺杂低热光系数25/400 μm掺镱双包层光纤,开展了全光纤高功率窄线宽光纤激光放大实验。激光系统实现了中心波长为1060.3 nm、线宽为25 GHz、最高功率为2.2 kW的单模激光输出,其斜率效率达78%,光束质量因子M2≈1.2,其功率是目前报道的基于国产25/400 μm掺镱双包层光纤窄线宽放大器单模激光输出的最高功率。
光纤激光 增益光纤 热光系数 单模 窄线宽激光器 
光学学报
2019, 39(6): 0636001
陈晓龙 1,2楼风光 3何宇 1王孟 3[ ... ]周军 1
作者单位
摘要
1 中国科学院上海光学精密机械研究所上海市全固态激光器与应用技术重点实验室, 上海 201800
2 中国科学院大学材料与光电研究中心, 北京 100049
3 中国科学院上海光学精密机械研究所强激光材料重点实验室, 上海 201800
基于自主研发的大模场增益光纤和无源器件,采用双端抽运技术,搭建了一台全国产化10 kW 光纤激光器,实现了非线性效应抑制。该激光器的功率放大器的输出功率达到10.14 kW,中心波长为1070.36 nm,3 dB光谱带宽为5.32 nm。其主放大级最大光-光转换效率为87.8%,斜率效率为89.2%,成为目前国内报道的效率最高的10 kW级光纤激光器。
激光器 掺镱光纤 主振荡放大 高效率 
光学学报
2019, 39(3): 0336001
Author Affiliations
Abstract
1 Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 University of Chinese Academy of Sciences, Beijing 100049, China
3 e-mail: fsy@siom.ac.cn
Induced loss at 633 nm is tested in Yb3+/Al3+ co-doped silica fiber by a core pumped with a 974 nm laser and probed with a 633 nm laser. The fiber is prepared by the modified chemical vapor deposition method combined with solution doping. Different power scales of pump light and probe light are used in the tests. It is found that there is a dynamic equilibrium between photobleaching induced by 633 nm probe light and photodarkening (PD) induced by 974 nm pump light. For the first time to our knowledge, the effect of 633 nm probe laser power on an induced loss test of Yb3+/Al3+ co-doped silica fiber is studied quantitatively. It suggests that as long as the 633 nm probe light power is less than 0.2 mW, the induced loss is mainly contributed by the PD effect of pumping light, and the deviation of induced loss is less than 5%.
060.2270 Fiber characterization 060.2290 Fiber materials 060.2300 Fiber measurements 
Chinese Optics Letters
2018, 16(1): 010603
作者单位
摘要
中国科学院上海光学精密机械研究所, 上海 201800
中国激光
2015, 42(8): 0819001

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