共查询到20条相似文献,搜索用时 140 毫秒
1.
为了避免片状布儒斯特角结构热容激光器由热退偏造成的腔内高动态损耗,采用双色膜技术研制了V形有源镜结构固体热容激光器。该激光器采用曲率半径为5 m的平凹稳定腔结构,共8片Nd:YAG介质,每片介质表面采用双色膜层设计,每2片构成一个模块,由3支氙灯提供能量,激光器由4个模块构成。在双色膜层上,泵浦光透过率大于95%,对1 064 nm光波反射率大于99.7%。在1 ms脉宽重复频率运转条件下,激光输出随时间下降并渐趋平稳;在5 ms脉宽运转时,单脉冲输出47 J,输出峰值功率达9.4 kW,与计算得到的10.11 kW的峰值输出基本相符。该振荡器的总体电光效率达到了1.2%,通过进一步优化后,具备向更高功率定标放大的潜力。 相似文献
2.
3.
4.
5.
用20 W光纤耦合LD作为泵浦光源,对Nd3+sup>:YVO4/sub>微片进行了增益开关实验,获得了可控制变重复频率(1 Hz~25 kHz)的调Q激光输出。输出脉冲激光的宽度为16 ns,输出的峰值功率在几W。从速率方程出发进行了增益开关理论研究,通过数值解,分析了输出激光特性:当泵浦电流高于产生单脉冲的电流时,增加泵浦电流将在一个泵浦脉宽中出现多个激光脉冲输出;增加泵浦脉宽,将在一个泵浦脉宽中出现多个激光脉冲输出,泵浦脉宽越大,子脉冲个数越多;当增加重复频率时,输出与泵浦激光重复频率完全一致的激光脉冲,但也将在一个泵浦脉宽中出现多个激光脉冲输出。 相似文献
6.
报道了一种宽温度适应范围的微型化人眼安全激光器。采用中心波长940nm的二极管作为泵浦源,Er3+/Yb3+共掺磷酸盐玻璃作为增益介质,Co2+:MgAl2O4作为被动调Q晶体,研究了微型激光器的结构和激光在宽温度范围下的输出特性。当泵浦能量9mJ,重复频率10Hz,泵浦脉宽5ms时,获得了单脉冲能量130μJ,脉宽5.5ns,峰值功率大于20kW的激光输出,光束质量因子为1.3。采用真空封装工艺,在-40~50℃温度范围内,自然冷却方式下激光器稳定输出,功率不稳定性波动小于5%。 相似文献
7.
8.
在高功率脉冲气体激光器中,用角隅反射镜作为全反镜,平行平面镜作为输出镜构成角隅全反镜谐振腔。对角隅腔激光器的输出特性和抗失调稳定性进行了研究,并与平凹腔和平平腔激光器进行了比较。实验结果表明:在角隅全反镜失调角为16 mrad时,角隅腔激光器的单脉冲输出能量下降9.2%,且近场输出光斑没有明显变化;而凹面全反镜失调角仅为0.4 mrad时,平凹腔激光器输出能量下降了9%,近场输出光斑严重变形。在输出镜正前方3.12 m处测量,当角隅镜偏转16.3 mrad时,激光器输出光斑与标准状态时的输出光斑重合;凹面全反镜失调角为0.4 mrad时,激光器输出光斑位移14 mm。经模式仪分析表明,角隅腔激光器近场光强分布均匀。 相似文献
9.
为了实现高可靠、窄脉宽、高峰值功率激光输出,采用侧面泵浦技术和电光调Q技术,设计出一种激光二极管侧面泵浦电光调Q全固态绿光激光器。采用结构简单、紧凑的平-平腔设计,其端镜和输出镜均为平面镜,获得较稳定的侧面泵浦Nd∶YAG腔外倍频KTP脉冲绿光激光输出。当泵浦电流为120A,重复频率为600Hz时,获得脉冲绿光的最高输出平均功率为3.62W,1064nm到532nm的转换效率为15.3%,其脉宽为21ns,峰值功率为300kW, 单脉冲能量为6.01mJ。实验结果表明:该激光器稳定性可靠,输出激光脉宽较窄、峰值功率高。 相似文献
10.
11.
12.
千瓦级半导体抽运的固体热容板条激光器 总被引:12,自引:0,他引:12
报道了千瓦级激光二极管面阵抽运固体热容激光器的理论与实验研究,分别采用Nd∶YAG单板条和双板条串接的热容激光器,利用热容激光器的理论计算模型计算了在一定的工作时间内激光输出特性,并进行了实验验证。实验中采用的晶体尺寸均为59mm×40mm×4.5mm,对单板条进行抽运时平均功率大约为5.6kW,双板条串接时为11.2kW,重复频率为1kHz,占空比为20%。实验中观察了1s的工作时间内脉冲能量输出的波动情况,单板条时单脉冲能量输出最大为1.3J,在1 s后单脉冲能量输出下降到开始的70%左右,而双板条串接时单脉冲能量输出最大为2.06J,在1s后单脉冲能量输出下降到开始的50%左右,对单块晶体采用通水冷却的准热容热管理模式能有效地降低其热效应。 相似文献
13.
A conductively cooled, laser diode (LD) end-pumped, injection-seeded single frequency Nd:YAG laser is designed and impleinented. The laser utilizes Nd:YAG rod as gain medium and compact dual-endpumping arrangement using two fiber-coupled LDs with a maximum output of 150 W. The optimized ramp-fire technique is applied to build reliable single longitudinal mode oscillating. The laser is capable of producing a 10-raJ Q-switched pulse with 13-ns pulse width at 1064 nm at a pulse repetition rate of 250 Hz. The output beam qualities M2 of approximately 1.19 and 1.22 in horizontal and vertical directions are detected, respectively. 相似文献
14.
15.
16.
A High-Energy Good-Beam-Quality Krypton-Lamp-Pumped Nd:YAG Solid-State Laser with One Pump Cavity 下载免费PDF全文
We investigate a high-energy good-beam-quality krypton-lamp-pumped pulsed Nd: YA G solid-state laser with one pump cavity. The symmetrical resonator laser is developed and is rated at 80 J with beam parameter product 12mm mrad. The total system electro-optics efficiency of the lamp-pumped YAG laser is as high as 3.3% and the stability of output energy is ±2% with pulse width tunable between 0.1 ms and 10ms. The experimental results are consistent with the theoretical analysis and simulation. 相似文献
17.
18.
19.
The design and performance of conduction-cooled, laser diode-pumped oscillator and amplifier slab laser featuring high efficiency, high pulse energy and high beam quality for space-based application are reported. The oscillator was a diode-pumped Q-Switched Nd:YAG slab laser using unstable resonator, and the amplifiers were two zig-zag Nd:YAG slabs based on a side-pumped slab geometry. A near diffraction-limited output of 450 mJ in a 10 ns pulse at a repetition rate of 20 Hz was obtained, corresponding to an optical-to-optical conversion efficiency of over 20%. 相似文献
20.
A novel double-slab Nd:YAG laser, which uses face-pumped slab medium cooled by liquid with different temperatures on both sides, is proposed. The thermal distortion of wavefront caused by the non-uniform temperature distribution in the laser gain media can be self-compensated. According to the method of operation, the models of the temperature distribution and stress are presented, and the analytic solutions for the model are derived. Furthermore, the numerical simulations with pulse pumping energy of 10 J and repetition frequencies of 500 and 1000 Hz are calculated respectively for Nd:YAG laser medium. The simulation results show that the temperature gradient remains the approximative linearity, and the heat stress is within the extreme range. Then the absorption coefficient is also discussed. The result indicates that the doping concentration cannot be too large for the high repetition frequency laser. It has been proved that the high repetition frequency, high laser beam quality, and high average output power of the order of kilowatt of Nd: YAG slab laser can be achieved in this structure. 相似文献