共查询到17条相似文献,搜索用时 453 毫秒
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《光子学报》2015,(10)
依据速率方程和边界条件,对高功率多点抽运全光纤激光器进行了研究.通过自制的级联侧面泵浦耦合器搭建全光纤激光器,级联耦合器的单点泵浦效率为96%,泵浦传输损耗为10%,信号光损耗分别是0.18dB和0.87dB;线性谐振腔结构中:前向抽运的光-光转换效率为69%,低于后向抽运中70%的光-光转换效率,与理论分析一致;双向泵浦方式中,在单臂输入975nm泵浦功率为110 W的条件下,激光功率输出为311 W,中心波长为1 080nm,光谱宽度为1.6nm,光-光转换效率为70%,光束质量约为1.3.激光器性能稳定,若增加单臂泵浦功率或级联泵浦耦合器个数,可获得更高功率的激光输出. 相似文献
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超连续谱光源在众多科学领域具有广泛而重要的应用, 近年来一直是国际研究热点. 回顾了利用连续光激光器和脉冲光激光器抽运光子晶体光纤产生超连续谱光源的形成机制以及近几年来两种机制下高功率超连续谱光源所取得的进展, 分析了在提高超连续谱光源输出平均功率过程中需要克服的难题. 报道了国防科学技术大学通过优化超连续谱光源的整体结构, 攻克了低损耗熔接、光纤端面抗损伤、热处理以及非线性效应的有效控制等关键技术, 成功研制出一种全光纤结构、输出平均功率为177.6 W的超连续谱光源, 光谱范围覆盖1064-2000 nm, 10 dB光谱带宽约740 nm, 光-光转换效率高达56%, 功率水平为国际领先. 相似文献
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为了避免高功率光纤激光器中光纤端面出现热效应问题,依据多点级联结构的耦合器,对分布式抽运的光纤激光器进行了研究。首先,介绍了实验室自主研制的级联耦合器。然后,分析了耦合器插入对光纤激光器的影响。最后,选用自制的耦合器搭建了分布式抽运的光纤激光器。实验结果表明:对耦合器插入损耗的研究,能够促进高功率级联耦合器的实现。在光纤激光器结构中,975 nm泵浦功率注入1.1 k W时,1 080nm激光功率输出为770 W,光-光转换效率为77%。在主控振荡功率放大结构中,激光功率输出为635 W,放大级的光-光转换效率为78%。分布式抽运方式可以使泵浦光多点注入,避免了热量的集中,能够获得千瓦级的激光功率输出。 相似文献
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主振荡功率放大(main oscillation power amplification, MOPA)结构由于其光束质量良好和参数可调的优点,已成为高功率光纤激光器的主流设计之一。为了改善高功率掺镱光纤激光器(ytterbium-doped fiber laser, YDFL)的输出性能,提高系统的光-光转换效率,文中报道了一台基于915 nm泵浦激光器和双包层掺镱光纤(ytterbium-doped fiber, YDF)的MOPA结构全光纤高功率激光器。该高功率光纤激光器由电调制激光二极管(laser diode, LD)泵浦的种子激光器和掺镱光纤放大器(ytterbium-doped fiber amplifier, YDFA)组成。连续光(continuous wave, CW)工作模式下,激光种子源经过YDFA后,实现了中心波长为1 069.96 nm的激光输出,最大平均输出功率可达945.9 W,MOPA激光器整机的斜率效率高达74.12%,具有良好的稳健性。该研究方案对研制高功率MOPA光纤激光器具有参考意义。 相似文献
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一种基于增益调制技术的全光纤化脉冲Yb光纤激光器 总被引:1,自引:1,他引:0
以波长为975 nm的半导体激光器作为泵浦源,周期性地脉冲泵浦一个包含Yb掺杂光纤和光纤光栅对的Yb光纤激光器,实现了基于增益调制技术的全光纤化高功率Yb光纤激光器的稳定脉冲输出.在50 kHz重频下,采用20 W的泵浦功率和2.4 μs的泵浦脉冲宽度,获得了1 060 nm波长脉冲宽度仅100 ns的稳定脉冲激光输出,单脉冲激光能量约为20 μJ.以此作为脉冲激光种子进行功率放大,获得了性能稳定的全光纤结构高功率脉冲激光输出,放大后单脉冲能量超过200 μJ,激光放大器斜率效率达到60%. 相似文献
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Combine a section of photonic crystal fiber and a picosecond fiber laser to realize an all-fiber supercontinuum source. The
picosecond laser exhibits 20 W average output power, 14 ps pulse duration at 480MHz repetition rate. Approximately 7 W supercontinuum
with over 1100 nm spectral range is obtained with an optical-optical conversion efficiency of 34%. Further improvements for
higher average power are discussed in this paper. 相似文献
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20 W all fiber supercontinuum generation from picosecond MOPA pumped photonic crystal fiber 总被引:1,自引:0,他引:1
S. -P. Chen J. -H. Wang H. -W. Chen Z. -L. Chen J. Hou X. -J. Xu J. -B. Chen Z. -J. Liu 《Laser Physics》2011,21(3):519-521
An all fiber high power supercontinuum (SC) source is demonstrated by pumping a section of photonic crystal fiber (PCF) with
a picosecond MOPA laser. The core of the PCF is enlarged at the input end through a serious of PCF post processing method
to match the output fiber of the picosecond laser, to ensure low loss splicing, hence high power operation of the whole system.
The supercontinuum output spectrum covers the wavelength range from 650 nm to beyond 1700 nm. Limited by available pump power,
20 W super-continuum output power is obtained under 29.5 W picosecond pump power, giving a high optical to optical conversion
efficiency of 67.8%. 相似文献
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B.A. Cumberland J.C. Travers R.E. Kennedy S.V. Popov J.R. Taylor 《Optics Communications》2007,277(1):134-137
We demonstrate a uniform high spectral brightness and peak power density all-fiber supercontinuum source. The source consists of a nanosecond Ytterbium fiber laser and an optimal length PCF producing a continuum with a peak power density of 2 W/nm and less than 5 dB of spectral variation between 590 and 1500 nm. The Watt level per nm peak power density enables the use of such sources for the characterization of non-linear materials. Application of the source is demonstrated with the characterization of several periodically poled crystals. 相似文献
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Different supercontinuum generation processes in photonic crystal fibers pumped with a 1064-nm picosecond pulse 下载免费PDF全文
Picosecond pulse pumped supercontinuum generation in photonic crystal fiber is investigated by performing a series of comparative experiments. The main purpose is to investigate the supercontinuum generation processes excited by a given pump source through the experimental study of some specific fibers. A 20-W all-fiber picosecond master oscillator-power amplifier (MOPA) laser is used to pump three different kinds of photonic crystal fibers for supercontinuum generation. Three diverse supercontinuum formation processes are observed to correspond to photonie crystal fibers with distinct dis- persion properties. The experimental results are consistent with the relevant theoretical results. Based on the above analyses, a watt-level broadband white light supercontinuum source spanning from 500 nm to beyond 1700 nm is demonstrated by using a picosecond fiber laser in combination with the matched photonic crystal fiber. The limitation of the group velocity matching curve of the photonic crystal fiber is also discussed in the paper. 相似文献
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