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1.
利用Nd:YAG再生放大器,对1064 nm掺镱锁模全光纤激光器输出的皮秒脉冲进行了功率放大.研究分析了掺镱锁模全光纤激光器输出脉冲对Nd:YAG再生放大器能量提取效率的影响,通过对掺镱锁模全光纤激光器自相位调制的控制,减少了输出光谱的振荡结构,提高了掺镱锁模全光纤激光器对Nd:YAG再生放大器的能量提取效率,实现了对锁模全光纤激光器输出的中心波长1064.4 nm,3 dB光谱宽度0.35 nm、脉宽11 ps、单脉冲能量为3.2 nJ、频率为38 MHz的锁模脉冲的再生放大,得到输出重复频率为1 kHz,最大的单脉冲能量为1.3 mJ的皮秒脉冲.  相似文献   

2.
Nd:YAG声光瞬态锁模激光器   总被引:1,自引:1,他引:0  
本文介绍的Nd:YAG声光锁模激光器,采用声光调制器锁模、部分电光Q开关预激光和储能放大。在谐振腔中插入染料盒还可以进行主被动锁模。整个系统的输出性能是:锁模脉冲宽度从20ps到几个ns秒范围内可调,单个脉冲能量大于0.1mJ,脉冲序列幅度的稳定度优于90%。  相似文献   

3.
分析了1.06 μm半导体可饱和吸收镜(SESAM)结构及被动锁模基本原理,利用SESAM实现了脉冲式Nd:YAG激光器1.06μm激光的被动锁模,获得了稳定的皮秒激光脉冲序列输出,脉冲序列的能量为45mJ.实验上还研究了腔长对SESAM锁模效果的影响.提出一种基于迈克耳逊干涉仪的皮秒光脉冲测量方法--二次谐波自相关单次测量法,分析这种测量方法的原理并构建实验装置对SESAM被动锁模Nd:YAG激光器的皮秒激光脉冲进行测量,测得激光脉冲宽度为43.6 ps.二次谐波单次测量法具有精度较高,操作简单等优点.  相似文献   

4.
本文描述一台由两级Nd:YAG激光器组成的紧凑高功率激光系统的结构及其工作性能。激光系统分成三个部分:对撞脉冲式的主-被动锁模振荡器,单脉冲选择器和四程放大器。振荡器输出锁模脉冲列的包络幅度起伏小于±4%,其脉冲宽度可以在宽范围内(20ps~2.5ns)方便地切换。对于单个0.1mJ、200ps的激光脉冲,四程放大器能提供7×10~2的放大倍数。  相似文献   

5.
报道一种可精确同步输出宽带啁啾脉冲、纳秒级整形脉冲以及窄带光参量啁啾放大抽运脉冲的全光纤多种子激光脉冲产生系统.采用掺镱光纤锁模激光器和掺镱单纵模光纤振荡器作为系统的光源,将掺镱光纤锁模激光器输出的超短脉冲分束啁啾展宽至0.9ns后,一路进行放大产生10μJ量级的宽带啁啾脉冲为高能拍瓦激光器系统提供种子光脉冲,另一路通过1.2nm滤波产生140ps的基元脉冲,通过光纤堆积器产生可编程整形的2.3ns脉冲,再经过放大达到10μJ量级,提供任意整形的压缩脉冲.同时,将部分掺镱光纤锁模激光器输出的超短脉冲进行光电转换并锁相后,产生与锁模超短脉冲高精度同步的电脉冲用于触发幅度调制器,将掺镱单纵模光纤振荡器输出的连续光削波放大,产生光参量啁啾放大抽运脉冲.该系统能够根据物理实验的需要,非常灵活地在输出各种脉冲之间做出选择.  相似文献   

6.
7.13 W全固态1 319 nm宏微脉冲激光器   总被引:2,自引:0,他引:2       下载免费PDF全文
 研制了一台高效率全固态平均功率7.13 W的1 319 nm宏微脉冲激光器。激光器采用热稳Z形折叠腔,增益模块采用自行研制的准连续15个二极管芯片环形泵浦的Nd:YAG模块,采用主动声光锁模器作为锁模元件,并在腔内插入倍频KTP晶体对激光器的输出尖峰进行抑制。为了获得稳定的锁模状态,对激光器腔长进行了精确设计和调节。当激光器腔长与锁模器驱动频率匹配时,获取了宏脉冲重复频率400 Hz、脉宽约190 μs,微脉冲重复频率95.6 MHz、脉宽小于1.0 ns的1 319 nm激光脉冲。  相似文献   

7.
吴逢铁  张文珍 《光子学报》2000,29(4):308-311
本文描述我们设计的带抗共振环 (ARR)的对撞脉冲锁模 (CPM )非稳腔Nd :YAP和Nd :YAG激光器 ,该激光腔结合了CPM腔脉宽窄、工作稳定和非稳腔输出能量高的特点 ,是一理想的高功率激光器 同时选择了KTP、BBO和LBO等优良非线性晶体作为腔内倍频元件 ,实现高效倍频转换 获得× 1 0mJ和 5GW /cm2 的高能量和高功率绿光皮秒脉冲输出 ,倍频转换效率高达 ( 50~ 70 ) %  相似文献   

8.
吴逢铁  张文珍 《光子学报》2000,29(4):308-311,316
本文描述我们设计的带抗共振环(ARR)的对撞脉冲锁模(CPM)非稳腔Nd:YAP和Nd:YAG激光器,该激光腔结合了CPM腔脉宽窄、工作稳定和非稳腔输出能量高的特点,是一理想的高功率激光器同时选择了KTP、BBO和LBO等优良非线性晶体作为腔内倍频元件,实现高效倍频转换获得×10mJ和5GW/cm2的高能量和高功率绿光皮秒脉冲输出,倍频转换效率高达(50~70)%.  相似文献   

9.
连续波光阴极注入器的驱动激光器研究   总被引:1,自引:1,他引:0       下载免费PDF全文
 在连续波光阴极注入器的研究中,驱动激光器是一个关键技术,采用连续锁模振荡器的锁模输出作为种子源,用二极管连续泵浦放大,再连续倍频,可以产生符合注入器要求的激光脉冲列作为驱动激光。  相似文献   

10.
白振岙  白振旭  陈檬  李港 《应用光学》2012,33(4):804-807
利用激光二极管(LD)端面抽运Nd∶YVO4激光晶体皮秒三倍频355nm全固态紫外激光器,采用半导体可饱和吸收镜(SESAM)锁模技术及皮秒再生放大技术,对1 064 nm基波采用Ⅰ类相位匹配Li3B3O5(LBO)晶体二倍频和Ⅱ类相位匹配LBO晶体三倍频,获得了稳定性好、倍频效率较高的355 nm紫外激光输出。当二极管泵浦功率为5 W时,获得了脉宽为17 ps、重复频率为1 Hz、单脉冲能量为129.6 J的稳定三倍频紫外激光输出,基频光到二倍频光和三倍频光的转换效率分别达到60.3%和16.6%,3 h输出单脉冲能量的抖动在0.58%以下。  相似文献   

11.
In the present work, we present the spatial evolution of the copper plasma produced by the fundamental harmonic (1064 nm) and second harmonic (532 nm) of a Q-switched Nd:YAG laser. The experimentally observed line profiles of neutral copper have been used to extract the electron temperature using the Boltzmann plot method, whereas, the electron number density has been determined from the Stark broadening. Besides we have studied the variation of electron temperature and electron number density as a function of laser energy at atmospheric pressure. The Cu I lines at 333.78, 406.26, 465.11 and 515.32 nm are used for the determination of electron temperature. The relative uncertainty in the determination of electron temperature is ≈10%. The electron temperature calculated for the fundamental harmonic (1064 nm) of Nd:YAG laser is 10500–15600 K, and that for the second harmonic (532 nm) of Nd:YAG laser is 11500–14700 K at a Q Switch delay of 40 μs. The electron temperature has also been calculated as a function of laser energy from the target surface for both modes of the laser. We have also studied the spatial behavior of the electron number density in the plume. The electron number densities close to the target surface (0.05 mm), in the case of fundamental harmonic (1064 nm) of Nd:YAG laser having pulse energy 135 mJ and second harmonic (532 nm) of Nd:YAG laser with pulse energy 80 mJ are 2.50×1016 and 2.60×1016 cm−3, respectively.  相似文献   

12.
设计了一种高倍率的固体皮秒脉冲激光放大器,采用Nd:YAG板条作为激光增益介质。借助板条结构的角度选通结构,搭建了板条五通放大系统,实现了对注入皮秒脉冲激光的高倍率放大。种子源工作在脉冲模式,放大器泵浦源在连续模式工作。皮秒光纤激光器可以在不同的重复频率下工作,脉冲宽度为13.4 ps。种子光经过隔离和耦合系统之后,注入板条的单脉冲能量为25 nJ。当种子源工作重复频率为24.46 MHz时,板条放大器输出平均功率377 W,单脉冲能量15.5 μJ;当种子源工作重复频率为49.8 kHz时,板条放大器输出平均功率89 W,单脉冲能量1.8 mJ,峰值功率为134 MW,放大倍率达到7.2×104。  相似文献   

13.
We demonstrate a high-gain vortex power amplifier with the double-pass configuration based on the rod Nd:YAG crystal. In the experiments, a nanosecond vortex seed beam is converted from a conventional Q-switched Nd:YAG laser output with a spiral phase plate and then amplified with the Nd:YAG amplifier stage. A maximum amplification output energy up to 163.5 mJ is achieved at 20 Hz with a 3.2-ns pulse, corresponding to an amplification factor of 81.8. Further discussions are provided to find ways of increasing the power scaling.  相似文献   

14.
The pulse characteristics of a laser diode dual-end-pumped electro-optic Q-switched Nd:LuAG ceramic laser at various repetition rates are presented. The largest output pulse energy of 11 mJ is realized at the repetition rate of 100 Hz with pump energy of 84.3 mJ, and the slope efficiency in respect to pump pulse energy is 18.6%. The single pulse peak power reaches up to 1.57 MW. Using Nd:LuAG ceramic as the amplification medium seeded by an Nd:YAG laser of 5.2 mJ, a 10.3 mJ amplified pulse is obtained with pump pulse energy of 42.8 mJ, corresponding to an extraction efficiency of 11.9%.  相似文献   

15.
We have demonstrated highly efficient broadband amplification by an optical parametric chirped pulse amplifier (OPCPA) system that uses high energy seed pulses. The OPCPA consists of three type I B-barium borate (BBO) crystals pumped by a Q-switched Nd:YAG laser. We successfully amplified the microjoule level seed pulses to 78 mJ with a pump-to-signal optical conversion efficiency of 26% at a 10 Hz repetition rate. To our knowledge these results represent the most optically efficient OPCPA to date pumped by a typical Q-switched laser.  相似文献   

16.
In this paper, a four-wavelength electro-optic (E-O) Q-switched solid-state laser system was presented. This laser system only use one Nd:YAP laser crystal, which irradiates 1079.5 nm and 1341.4 nm fundamental wavelengths. Both of these wavelength lasers and their second harmonic generation (SHG) compose a four-wavelength Nd:YAP Q-switched laser. The Q-switched output energies of 277 mJ for 1079.5 nm and 61 mJ for 539.8 nm and that of 190 mJ for 1341.4 nm and 51 mJ for 670.7 nm wavelengths were achieved. The pulse durations of 1079.5 and 539.8 nm lasers and that of 1341.4 and 670.7 nm lasers are 20 and 40 ns, respectively. Due to this laser system has the larger chance and convenience for selecting the wavelengths and operation modes by moving a stepping motor and controlling the Q-switched devices, it will broaden applications in the fields of laser cosmetology, dermatotis therapy, material processing and laser display etc.  相似文献   

17.
双程放大740 mJ TEC冷却LD泵浦Nd:YAG激光器   总被引:1,自引:1,他引:0       下载免费PDF全文
报道了一种实现高能量输出的激光二极管(LD)泵浦无水冷全固态Nd:YAG双程放大器结构。整个放大系统采用了泵浦与晶体棒集成的模块以及半导体制冷器(TEC),从而实现了激光系统的小型化。总腔长为730 mm。在10 Hz重复频率下,主振荡器得到了最大脉冲能量为350 mJ的激光输出。脉宽为9.7 ns,光束质量M2在两个方向分别为7.7和12.3。并进行了双程放大的研究,双程放大后得到了740 mJ、10 ns的激光输出。  相似文献   

18.
We presented a Nd:YAG master oscillator power amplifier (MOPA) with the compact LD double-end pumped configuration. To acquire the homogenous absorption distribution, a composite short Nd:YAG rod has been employed as the amplification medium and the rod side was well polished to cause total internal reflection (TIR) at the internal wall of the rod. Because the axes of pump LDs and the seed laser occupy the same position, it is relatively easy to obtain both the satisfied mode-matching efficiency and the high absorption efficiency by using two stacked-LD modules. A seed laser, with the input energy of 15 mJ and the pulse width of 46 ns, was amplified through the MOPA structure with the one-pass gain of about 1.2. We have not found any parasitic oscillations from both ends of the amplifier rod until the total pump LD power reached 420 W. The proposed scheme is thought to be useful in a multiple-pass MOPA system for high-average-power applications.  相似文献   

19.
针对啁啾脉冲放大技术建成的钛宝石激光装置,提出一种获得高重复率激光脉冲列的方法.通过改变钛宝石再生放大器中泡克耳斯盒电光开关的传统工作模式,使得腔内放大的脉冲从某特定时刻起,每当在腔内往返一次就以一定的倒出比例(倒出率)倒出腔内脉冲能量的一部分,从而可以在有限的时间段内产生高重复率的啁啾激光脉冲列.基于Franz-Nodvik放大理论,建立了该高重复率再生放大器的理论模型,通过数值计算,系统地分析了初始增益、倒出时刻、倒出率对输出的脉冲序列的影响.在抽运功率为35mJ、倒出率为1/2的实验条件下,通过腔外的脉冲数量选择器,在一个抽运周期内的有限时间段内已获得了14个幅度相近、单脉冲能量约为0.02mJ、重复率为100MHz的啁啾脉冲序列.从此啁啾脉冲列中选取数个脉冲,通过10TW级的激光系统放大和压缩,已获得100MHz重复率的飞秒太瓦级脉冲列. 关键词: 高重复率 多通放大 啁啾脉冲放大 钛宝石激光器  相似文献   

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