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1.
850nm高亮度近衍射极限锥形半导体激光器   总被引:4,自引:4,他引:0       下载免费PDF全文
杨晔  刘云  张金龙  李再金  单肖楠  王立军 《发光学报》2011,32(10):1064-1068
制备了具有低红暴优势的850 nm大功率高亮度锥形半导体激光器,获得了近衍射极限的激光输出.当连续输功率为200 mW时,光束质量因子M2仅为1.7,亮度高达16.3 MW·cm-2·sr-1;当功率提高到1W时,M2因子和亮度仍分别达到2.8和9.9 MW·cm-2· sr-1.此外,研究了锥形激光器的功率、光谱、远...  相似文献   

2.
Uncoated plane parallel windows made from ultra-transparent KCl and NaCl crystals, which were grown by ‘injecting the reactive atmosphere’ (IRA) technique, have been tested as output windows in a high-power, high-repetition TEA CO2 laser, in various resonator configurations. Output power densities per pulse of 2 to 6 MW cm-2, which are 40% to 60% less than with 50% reflective coated ZnSe, have normally been obtained. The laser performances did not change after one year of operation and more than 107 pulses per window. No laser damage has been observed.  相似文献   

3.
With the development of photocathode rf electron gun, electrons with high-brightness and mono-energy can be obtained easily. By numerically solving the relativistic equations of motion of an electron generated from this facility in laser fields modelled by a circular polarized Gaussian laser pulse, we find the electron can obtain high energy gain from the laser pulse. The corresponding acceleration distance for this electron driven by the ascending part of the laser pulse is much longer than the Rayleigh length, and the light amplitude experienced on the electron is very weak when the laser pulse overtakes the electron. The electron is accelerated effectively and the deceleration can be neglected. For intensities around 1019 W•μm2/cm2, an electron's energy gain near 0.1 GeV can be realized when its initial energy is 4.5 MeV, and the final velocity of the energetic electron is parallel with the propagation axis. The energy gain can be up to 1 GeV if the intensity is about 1021 W•μm2/cm2. The final energy gain of the electron as a function of its initial conditions and the parameters of the laser beam has also been discussed.  相似文献   

4.
The high power pulsed laser Prague asterix laser system (PALS), operating at the fundamental (1ω) and third (3ω) harmonics (1315 and 438 nm wavelengths, respectively), is employed in a single-shot mode to irradiate tantalum targets in vacuum. The laser pulse width is 400 ps and the laser pulse energy ranges between 43 and 736 J at 1ω and between 12 and 230 J at 3ω. High ablation yields (0.1–0.6 mg per pulse) are measured as a function of the laser pulse energy at both wavelengths; at 438 nm higher etching rates are observed. The produced craters are analysed by the scanning electron microscope (SEM) and by the high sensitivity surface profiler system. They are investigated in dimension, shape and angle aperture as a function of the incident laser energy. Different possible mechanisms responsible for the different crater shapes are presented and discussed.  相似文献   

5.
In this paper, an all fiber Yb3+-doped fiber ring laser with large tuning range has been reported. A 976 nm laser diode (LD) pumped laser is used as the pump source and high concentration Yb3+-doped fiber is adopted as gain medium. Adjusting the polarization controller (PC), a widely tunable range of 20 nm from 1030 to 1050 nm is obtained. The spectral linewidth of the pulse is less than 0.2 nm. Comparing with other fiber laser structures, the fiber laser with an all-fiber structure has higher efficiency and better stability. The laser also has very stable and flat output within the whole tuning range.  相似文献   

6.
采用溶胶-凝胶法在SiO_2微球表面覆盖上一薄层Nd~(3+)掺杂SiO_2,并经电极放电熔融后形成表面光滑的高Q值微球.采用锥光纤将808 nm的抽运激光耦合入钕离子掺杂的高Q值微球形成回廊模,激发产生了1080—1097 nm波段受激辐射激光.由于所产生的激光有足够高的功率密度,在高Q SiO_2微球中激发产生了波长为1120—1143 nm一级自受激拉曼散射激光.推导了锥光纤掺钕微球组合的自受激拉曼散射的输出功率和阈值公式.描述了输出激光的特性:阈值、输出功率、线宽、边模抑制比.  相似文献   

7.
利用kHz激光与固体靶相互作用产生了平均流强为1.3×107 photons·sr-1·s-1的X射线源, 研究了激光的对比度和能量对激光与固体靶相互作用产生的X射线能谱及Kα 产额的影响, 使用刀边成像技术测量了X射线源的源尺寸, 并进行了初步的成像实验. 实验中观察到对于非相对论级别的激光脉冲, 降低激光的对比度有利于提高Kα 产额, 而使用高对比度高强度激光, 更有利于获得高通量高信噪比X射线源. 关键词: kHz激光 固体靶 X射线  相似文献   

8.
Here, we report on the development of an efficient, high peak power lamp pumped Nd:YAG laser with time-shared fiber optic beam delivery. A maximum average output power of 270 W with 100 J maximum pulse energy and 5 kW peak power has been achieved with an electrical to laser conversion efficiency of 5.4%, which is on higher side for typical lamp pumped solid-state lasers. We have improved efficiency by spectral conversion and water flow optimization in the pump cavity, with a resulting beam quality comparable to commercial systems of similar power level. The resonator has been designed for stable operation from single-shot to 200 Hz repetition rate. A study of pulse-to-pulse laser energy stability for different resonator configurations has also been performed. The resonator was designed to achieve a good beam quality for the whole range of operation with a maximum beam parameter product of 15 mm mrad (M245). A simple mechanism for time-shared fiber optic port selection has also been devised. Material processing applications such as cutting of stainless steel sheets up to 14 mm thickness and welding of metals such as carbon steel with weld depths up to 2 mm using the developed laser system has also been reported.  相似文献   

9.
贾佑华  高勇  钟标  印建平 《物理学报》2014,63(7):74203-074203
近年来,掺Er3+的CdF2-CdCl2-NaF-BaF2-BaCl2-ZnF2玻璃已成为固体材料激光冷却领域中新的研究材料之一.本文利用激光器输出理论和驻波腔内共振增强原理分析了该材料的两种腔内增强激光的冷却,计算结果表明腔增强可获得几十到几百倍的增强因子.此外,比较了内腔和外腔这两种增强方案,研究结果表明,当材料的吸收比较小时,特别是材料长度小于0.3 mm时,采用内腔增强方案,腔内抽运功率高,冷却材料对激光的吸收大.然而当材料的吸收比较大时,特别是材料长度大于3 mm时,外腔增强方案更具优越性.最后,根据Er3+掺杂材料制冷工作波长和功率的要求,指出腔增强实验可通过半导体激光器来实现.  相似文献   

10.
潘其坤 《中国光学》2015,8(4):557-566
本文介绍了中红外固体激光器中新型的Fe2+: ZnSe激光器和基于MgO: PPLN、ZnGeP2晶体的光参量振荡器的发展现状,讨论了它们在发展过程中遇到的技术难题,探讨了中红外固体激光器的未来发展方向。波长为3~5 μm的中红外固体激光器具有效率高、体积小和重量轻等优点,在工业、医疗、军事等方面具有重要应用价值,研制大尺寸、高质量中红外激光晶体和输出波长更长的红外高功率激光泵浦源已成为中红外固体激光器未来发展方向之一。  相似文献   

11.
中远红外非线性光学晶体研究进展   总被引:4,自引:0,他引:4       下载免费PDF全文
贾宁  王善朋  陶绪堂 《物理学报》2018,67(24):244203-244203
3—5μm和8—12μm波段中远红外激光,在国防和民用领域均具有广泛的应用,作为全固态激光频率转换系统的核心部件,非线性光学晶体需要不断地优化和发展.本文从红外非线性光学晶体材料组成角度出发,总结了几种具有重大应用前景的磷族化合物(ZnGeP_2,CdSiP_2)、硫属化合物(CdSe, GaSe, LiInS_2系列,BaGa_4S_7系列)以及准位相匹配晶体(OP-GaAs, OP-GaP)等中远红外波段非线性光学晶体的研究进展.  相似文献   

12.
高向东  陈子琴 《中国物理 B》2015,24(1):18103-018103
In a laser butt joint welding process,it is required that the laser beam focus should be controlled to follow the weld joint path accurately.Small focus wandering off the weld joint may result in insufficient penetration or unacceptable welds.Recognition of joint position offset,which describes the deviation between the laser beam focus and the weld joint,is important for adjusting the laser beam focus and obtaining high quality welds.A new method based on the magneto-optical(MO)imaging is applied to measure the micro weld joint whose gap is less than 0.2 mm.The weldments are excited by an external magnetic field,and an MO sensor based on principle of Faraday magneto effect is used to capture the weld joint images.A sequence of MO images which are tested under different magnetic field intensities and different weld joint widths are acquired.By analyzing the MO image characteristics and extracting the weld joint features,the influence of magnetic field intensity and weld joint width on the MO images and detection of weld joint position is observed and summarized.  相似文献   

13.
周磊  李晓亚  祝文军  王加祥  唐昌建 《物理学报》2016,65(8):85201-085201
提出一种通过诊断等离子体反冲动量来计算激光加载产生冲击压强的方法. 当强激光辐照固体靶表面时, 所产生的高速喷射的等离子体对靶具有反冲作用, 通过诊断等离子体反冲动量的变化可以计算激光辐照固体靶产生的冲击压强变化. 本文利用辐射流体力学软件研究了这种诊断方法, 模拟采用的激光功率密度为5×1012-5×1013 W/cm2, 激光脉宽选取纳秒量级. 模拟结果表明该方法是有效且可行的.  相似文献   

14.
Since the discovery of high-temperature cuprate superconductors, there has been much intensive study about the mechanism of them. However, identifying the dynamical mechanism behind them remains one of the great challenges in condensed matter physics. We investigated the high-temperature YBa2Cu3O7−x superconducting films by using a free electron laser (FEL). The method is a type of photoelectron spectroscopy called a free electron laser internal photoemission. The spectrum of the photocurrent induced by FEL was measured in the case of 15 K and 100 K. We estimated the superconductive gap energy of YBa2Cu3O7−x by comparing the photocurrent spectrum of the superconductive state with that of non-superconductive state.  相似文献   

15.
为研究低活化铁素体/马氏体钢(RAFM) CLF-1激光焊接模式转变规律,对其焊缝横截面形貌及尺寸进行了宏观表征和定量分析。结果表明,在一定条件下,随着焊接功率的增大,焊接模式从热传导焊模式向小孔深熔焊模式转变,焊缝横截面表现为“圆弧形”、“V字形”和“钉头形”三种类型形貌。CLF-1钢激光焊接模式不受焊接速度、离焦量变化的影响。激光焊接模式转变的临界值为深熔焊阈值,CLF-1钢深熔焊阈值由材料自身特性决定,当焊接速度为10mm·s-1时,CLF-1钢深熔焊阈值约为1.20kW·mm-1。  相似文献   

16.
The O3 absorption coefficients for the rotational lines P(12)–P(28) of the 9.4 μm emission band of the CO2 laser are presented. Measurements were made in O3–air dilute mixtures (20–600 ppm) at 25°C and a total pressure of 1013.25 h Pa using a frequency stabilized cw CO2 laser and values have been determined with greater precision than in previously reported studies.  相似文献   

17.
李宁  吕晓静  翁春生 《物理学报》2018,67(5):57801-057801
针对高压环境吸收谱线加宽以及波分复用技术合波透射信号分析测试难题,提出利用非线性拟合方法对激光吸收光谱测量中激光强度与吸收光谱进行耦合求解.建立激光强度非线性变化与多谱线吸收拟合函数关系,解决了特殊环境下无法获取光谱基线的难题,实现了波分复用过程合波后光谱信号的分离与诊断.通过仿真验证该方法的可行性,分析计算了激光器特性和特征谱线位置等因素对拟合结果的影响.搭建实验台实现了1—10 atm变压力环境下6330—6337 cm~(-1)波段CO_2吸收光谱叠加信号的诊断分析,对气液两相脉冲爆轰过程中7185.6 cm~(-1)与7444.35 cm~(-1)波段波分复用光谱信号进行测试与拟合,无需分光设备实现了耦合光路分离和温度计算,研究结果对激光吸收光谱技术在高压环境以及燃烧环境下波分复用技术的发展具有重要意义.  相似文献   

18.
用提拉法生长了(1.5 at.%)Nd~(3+):Y_3Sc_2Al_3O_(12)(YSAG)激光晶体,摇摆曲线表明晶体结晶质量优良.测量了该晶体的吸收和发光光谱,表明其适合成熟的808 nm激光二极管(LD)抽运,其~4F_(3/2)→~4I_(11/2)跃迁最强发射波长为1059 nm,发射截面为1.03×10~(-19)cm~2,同时其激光上能级寿命为253μs,表明Nd:YSAG具有和Nd:YAG相近的效率,但其激光上能级寿命比Nd:YAG长约20μs.以LD抽运2 mm×2 mm×6 mm Nd:YSAG激光棒,激光阈值为0.85 W,最高输出功率为1.1 W,激光斜效率为21.1%,光-光转化效率为18.3%.综合表明Nd:YSAG单晶作为激光性能优良的全固态激光材料,更适合全固态调Q激光输出.  相似文献   

19.
激光氦离子源产生的MeV能量的氦离子因有望用于聚变反应堆材料辐照损伤的模拟研究而得到关注.目前激光驱动氦离子源的主要方案是采用相对论激光与氦气射流作用加速高能氦离子,但这种方案在实验上难以产生具有前向性和准单能性、数MeV能量、高产额的氦离子束,而这些氦离子束特性是材料辐照损伤研究中十分关注的.不同于上述激光氦离子产生方法,我们提出了一种利用超强激光与固体-气体复合靶作用产生氦离子的新方法.利用这种方法,在实验上,采用功率密度5×10~(18)W/cm~2的皮秒脉宽的激光脉冲与铜-氦气复合靶作用,产生了前向发射的2.7 MeV的准单能氦离子束,能量超过0.5 MeV的氦离子产额约为10~(13)/sr.二维粒子模拟显示,氦离子在靶背鞘场加速和类无碰撞冲击波加速两种加速机理共同作用下得到加速.同时粒子模拟还显示氦离子截止能量与超热电子温度成正比.  相似文献   

20.
A Nd:glass laser with pulse duration of 250 fs and 1.3 ps has been used to evaporate a Al65Cu23Fe12 quasicrystalline target. The gaseous phase obtained from the ablation process has been characterised by several techniques such as emission spectroscopy, quadrupole mass spectrometry and ICCD imaging, used to study the plume composition, energy and morphology. The results show that the ablation processes in the short-pulse regimes are very different to the nanosecond one. In particular the plume angular distribution shows a characteristic high cosine exponent and the composition is completely stoichiometric and independent from the laser fluence. Furthermore the mass spectra indicate the presence of clusters, both neutral and ionised and the emission from the target suggest a rapid thermalisation leading to the melting of the surface. To clarify the ablation process some films have been deposited, on oriented silicon, at different experimental conditions and analysed by scanning electron microscopy, atomic force microscopy, energy dispersive X-ray analysis and X-ray diffraction. The analyses show the presence of nanostructured films retaining the target stoichiometry but consisting of different crystalline and non crystalline phases. In particular the nanostructure supports the hypothesis of the melting of the target during the ablation and a mechanism of material ejection is proposed for both picosecond and femtosecond regimes.  相似文献   

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