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1.
128 W单频线偏振光纤放大器特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
高功率单频激光在激光雷达、光谱学、精密测量等领域具有广阔的应用前景.采用中心波长为1064 nm、光谱线宽为20 kHz、偏振消光比(PER)高于20 dB的单频线偏振分布式反馈光纤激光器做种子源(尾纤输出功率约为10 mW),利用种子注入主振荡功率光纤放大技术,通过两级级联放大实现了128 W高功率单频、线偏振、近衍射极限单模连续激光输出.主放大器光-光效率达到83%,PER高于12 dB.采用分段温控技术有效地提高了光纤中的受激布里渊散射(SBS)阈值,实验中未观察到明显的放大自发辐射和SBS现象,进 关键词: 掺Yb光纤放大器 主振荡功率光纤放大 单频 线偏振  相似文献   

2.
董小林  肖虎  马阎星  周朴  郭少锋 《物理学报》2012,61(6):64207-064207
进行了全光纤保偏主振荡功率放大型光纤激光器的实验研究. 采用两级级联放大的方式, 利用纤芯为5 μupm 的小芯径双包层保偏光纤, 在最大抽运功率为88 W 时实现了67 W的1083 nm保偏激光输出, 纤芯内的激光功率密度约为3.4 W/μupm2, 光-光转换效率为76%.分析结果表明, 进一步提高抽运功率有望获得更高功率的激光输出.  相似文献   

3.
双端输出光纤激光振荡器可以通过一个单谐振腔结构实现两路激光输出,能够减少高功率光纤激光系统的体积和成本,在工业领域有着很好的应用前景。基于双端泵浦谐振腔结构,采用稳波长981 nm光纤耦合半导体激光器(LD)泵浦纤芯/包层直径为30/400μm的双包层掺镱光纤,首次实现了总功率大于8 kW的双端输出光纤激光振荡器。在总最高泵浦功率为10.951 kW时,A端输出功率为3769 W, B端输出功率为4400 W,总功率为8169 W,激光器光-光转换效率74.6%,A、B端激光光束质量M2因子分别约2.13和2.36。在最高输出功率时,两端输出激光中均未观察到动态模式不稳定效应(TMI)和受激拉曼散射(SRS),通过进一步增加泵浦功率,有望实现更高功率的激光输出。  相似文献   

4.
设计了基于Sagnac环形镜的哑铃型结构全光纤掺镱激光器,使用976 nm多模激光二极管泵浦,通过调节偏振控制器获得了稳定的多波长线偏振激光输出。泵浦功率为20.4 W时,最高输出功率达到5.13 W,功率波动不大于0.02 W,激光器输出多波长激光线偏振度约为14.19 dB,多波长输出功率平坦度优于3 dB。  相似文献   

5.
采用国产大模场面积双包层光纤的714W连续光纤激光器   总被引:33,自引:2,他引:31  
采用两个中心波长约976 nm准直输出的高功率半导体激光模块为抽运源,通过空间滤波和非球面透镜耦合技术,双端抽运长度为21 m的大模场面积国产掺镱双包层光纤,获得了714.5 W的高功率连续激光输出。采用反向抽运,当入纤抽运功率为760 W时,激光输出功率达到501 W;采用双端抽运,当入纤抽运功率为1137 W时,获得了714.5 W的高功率连续输出,光光转换效率为62.8%,斜率效率为67%。  相似文献   

6.
利用光纤布拉格光栅作为光谱滤波器来控制锁模掺铥光纤激光器的光谱形状和脉冲宽度,以及结合纤芯抽运高掺杂双包层掺铥光纤技术,实现了2μm波段重复频率为611.5 MHz的皮秒脉冲激光输出.利用该高重复频率皮秒激光作为种子源,结合主振荡功率放大技术,研制出了百瓦量级全光纤全保偏结构皮秒脉冲掺铥光纤激光放大系统,得到了平均功率为203 W的线偏振皮秒脉冲激光输出,偏振消光比15 d B,激光脉冲宽度为15 ps,相应的激光峰值功率为22 k W.该结果为目前国际上2μm波段全光纤结构超短脉冲激光器所产生的最高平均输出功率,为下一步2—5μm波段高功率中红外激光的产生提供了可靠的抽运源.  相似文献   

7.
国产掺镱双包层光纤的激光特性   总被引:3,自引:2,他引:3       下载免费PDF全文
 采用MCVD方法研发了掺镱双包层光纤,并对其结构特性、荧光特性和激光特性进行了测试和研究。其D形内包层尺寸为400/450μm,数值孔径为0.36,纤芯直径约为16μm,数值孔径约为0.18。荧光谱线的范围为1 000~1 140 nm,1 030 nm处的峰宽大于50 nm。采用大功率激光二极管单端泵浦6 m长的双包层光纤,在泵浦入纤功率为61 W时, 获得了32 W的激光输出,斜率效率为64%。该光纤在高功率处未发现饱和现象,通过优化光纤参数与泵浦方式还可以提高转化效率和输出功率。实验表明该光纤可以取代进口光纤用作高功率激光器件。  相似文献   

8.
200W级高亮度半导体激光器光纤耦合模块   总被引:2,自引:0,他引:2  
光纤激光器系统需要高可靠性、高亮度、高功率光纤耦合输出二极管激光器模块作为泵浦源。基于mini-bar二极管激光器芯片,采用光束精密准直技术、自由空间合束技术来获得高亮度、高功率光纤耦合输出,针对光纤芯径为200μm、数值孔径为0.22的多模光纤,开展了线偏振二极管激光光纤耦合实验,实验结果表明:光纤稳定输出功率达280 W,对应亮度为5.87 MW/(cm2·sr),电-光效率为45.0%。采用偏振合束技术,光纤预期输出功率可达500 W,对应亮度超过10 MW/(cm2·sr)。该方法可应用于研制数百瓦级高亮度二极管激光光纤耦合输出激光器模块。  相似文献   

9.
空气包层大模场面积掺镱光子晶体光纤研究   总被引:2,自引:0,他引:2       下载免费PDF全文
陈瑰  蒋作文  彭景刚  李海清  戴能利  李进延 《物理学报》2012,61(14):144206-144206
采用改进的化学气相沉积法和气相液相混合掺杂技术制备大芯径掺镱石英光纤预制棒, 以此作为有源纤芯制备了纤芯直径约90 μm的掺镱双包层光子晶体光纤, 纤芯组分为镱铝磷共掺.双包层光子晶体光纤的模场面积约1330 μm2, 纤芯数值孔径0.065,包层数值孔径0.5.首次实现了国产掺镱光子晶体光纤的高功率高效率激光输出, 1 m长的光子晶体光纤激光器实现102 W 激光输出,斜率效率76%.  相似文献   

10.
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   

11.
We report experimental results on a 96.2 W all-fiberized nanosecond single-frequency masteroscillator power amplifier (MOPA) laser working at 1064 nm. An external modulation fiber laser with average power of 0.5 mW and line width of 20 kHz is used as the seed source. Amplifying the seed laser in four stages, a single-frequency laser with pulse duration of 10 ns and peak power of 816.7 W is obtained. The average output power is up to 96.2 W. Further power-scaling of this MOPA structure can be realized since our experiment is only pump-power limited.  相似文献   

12.
Single-frequency linearly-polarized 1083?nm all fiber nanosecond master-oscillator power amplifier laser system is demonstrated. A ring laser, whose key components are one saturable absorber and two polarization controllers, delivers a single-frequency continuous wave laser. Using an electro-optic modulator as the modulator, the pulse laser seed is obtained by modulating the CW laser. By amplifying the pulse seed to the average power of 61.6?W in three stages, a single-frequency linearly-polarized laser with pulse duration of 16?ns, repetition rate of 10?MHz and pulse energy of 6.16???J is obtained. No nonlinear effect is observed in our experiment. Higher output power can be obtained by increasing LDs of the main amplifier.  相似文献   

13.
Dong  X.  Xiao  H.  Zhou  P.  Wang  X.  Ma  Y.  Leng  J.  Xu  X.  Liu  Z. 《Laser Physics》2011,21(6):1108-1110
We demonstrate a high power all fiber single-frequency MOPA laser. The center wavelength of the single-frequency fiber laser seed is 1064 nm with a linewidth narrower than 20 kHz. A two-stage power amplification configuration is employed. A single-frequency fiber laser with an output power of 29.2 W is obtained, and the optical to optical efficiency is 78%.  相似文献   

14.
百瓦级全光纤结构单频掺铥主振荡功率放大器   总被引:2,自引:1,他引:1       下载免费PDF全文
报道了平均功率超过百瓦的单频掺铥全光纤结构主振荡功率放大器。使用线宽小于100kHz、中心波长为1.97μm的单频种子源进行级联放大,主放大器的斜率效率为50%。监测放大器的回光功率和光谱,没有发现受激布里渊散射以及其他非线性效应。通过增加泵浦功率,可以获得更高功率的掺铥单频放大输出。  相似文献   

15.
We report a unique all fiber-based single-frequency Q-switched laser in a monolithic master oscillator power amplifier configuration at ~1920 nm by using highly Tm-doped germanate fibers for the first time. The actively Q-switched fiber laser seed was achieved by using a piezo to press the fiber in the fiber Bragg grating cavity and modulate the fiber birefringence, enabling Q-switching with pulse width and repetition rate tunability. A single-mode polarization maintaining large core 25 μm highly Tm-doped germanate fiber was used in the power amplifier stage. For 80 ns pulses with 20 kHz repetition rate, we achieved 220 μJ pulse energy, which corresponds to a peak power of 2.75 kW with transform-limited linewidth.  相似文献   

16.
We demonstrate a high-power single-frequency master oscillator power amplifier (MOPA) fiber laser.The central wavelength of the single-frequency fiber laser seed is 1 063.8 nm,with a linewidth narrower than 20 kHz and output power of 120 mW.By using two-stage amplification,a single-frequency fiber laser with an output power of 122 W is obtained,and the optical-optical conversion efficiency is 72%.No significant amplified spontaneous emission (ASE) or stimulated Brillouin scattering (SBS) is observed.The output power can be further increased by launching more pump power.  相似文献   

17.
Kuhn V  Kracht D  Neumann J  Wessels P 《Optics letters》2011,36(16):3030-3032
We report for the first time, to the best of our knowledge, on a large mode area Er-doped photonic crystal fiber laser system. The fiber core had a diameter of 40 μm and NA of <0.04 leading to a mode field diameter of about 31 μm around 1550 nm wavelength. More than 70 W of single-frequency output power at 1556 nm could be extracted using a master-oscillator power-amplifier scheme. Near diffraction limited output beam quality has been verified by measuring the TEM(00) content with a nonconfocal scanning ring cavity.  相似文献   

18.
100 W全光纤声光调Q光纤激光器实验研究   总被引:2,自引:1,他引:1       下载免费PDF全文
 报道了一台全光纤结构主振荡功率放大(MOPA)型掺镱脉冲光纤激光器,以光纤光栅为腔镜,光纤型声光调Q的光纤激光器为种子源,通过两级掺镱双包层光纤放大器实现功率放大。对声光调Q的光纤激光器输出特性进行了研究,比较了不同泵浦波长、不同重复频率对激光输出功率和脉冲宽度的影响,并实现了最短脉冲宽度25 ns、单脉冲能量45 μJ的脉冲激光输出。在重复频率50 kHz时,对脉冲宽度130 ns、平均功率0.6 W的种子光进行放大,得到了平均功率102.5 W、脉冲宽度约240 ns的激光输出。  相似文献   

19.
12 W Q-switched Er:ZBLAN fiber laser at 2.8 μm   总被引:1,自引:0,他引:1  
A diode-pumped, actively Q-switched 2.8 μm fiber laser oscillator with an average output power of more than 12 W has been realized through the use of a 35 μm core erbium-doped ZBLAN fiber and an acousto-optic modulator; to our knowledge, this is the first 3 μm pulsed fiber laser in the 10 W class. Pulse energy up to 100 μJ and pulse duration down to 90 ns, corresponding to a peak power of 0.9 kW, were achieved at a repetition rate of 120 kHz.  相似文献   

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