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1.
(Tm,Ho):YLF晶体激光器的实验研究   总被引:2,自引:1,他引:1  
姚宝权  BourdetGL 《光学学报》2002,22(10):216-1218
报道了一台连续792nmTi:Al2O3激光器纵向抽运的(Tm,Ho):YLF微片激光器。在室温条件下,当抽运功率为680mW时,激光器在2.06μm波长的输出功率达到90mW。激光器阈值为380mW,光光转换效率为13%,斜率效率为26%.  相似文献   
2.
Performance of a liquid-nitrogen-cooled CW Tm, Ho:YLF laser   总被引:2,自引:0,他引:2  
A liquid-nitrogen-cooled Tm, Ho:YLF laser is constructed with a 10-mm-long Tm(6%) and Ho(0.5%) co-doped yttrium lithium fluoride crystal pumped by a laser diode operating at 792 nm. The laser outputpower is improved by cooling the Tm, Ho:YLF crystal from 300 to 77 K. When the crystal is kept at 77K, the laser threshold pump power is 230 mW, the slope efficiency is 27.4%, and the maximum optical-to-optical efficiency is 19.9%. At the same time, the relation between the input power and the output powerat different temperatures is obtained.  相似文献   
3.
非谐振腔型KTP光参变振荡器   总被引:1,自引:0,他引:1  
姚宝权  王月珠  王骐 《光学学报》2002,22(8):67-971
研究了双晶体走离补偿、非谐振腔型KTP光参变振荡器,利用一套膜片实现了KTP相位匹配所允许的全波段调谐,信号光调谐范围0.698μm-1.026μm,闲频光调谐范围1.105μm-2.237μm。5倍阈值处,信号光840nm最高输出能量53mJ,能量转换效率25.8%,量子转换效率40%,闲频光的量子郊率也达到32%。  相似文献   
4.
This paper reports that the Tm^3+:Lu2SiO5 (Tm:LSO) crystal is grown by Czochralski technique. The roomtemperature absorption spectra of Tm:LSO crystal are measured on a b-cut sample with 4 at.% thulium. According to the obtained Judd-Ofelt intensity parameters Ω2=9.3155×10^-20 cm^2, Ω4=8.4103×10^-20 cm^2, Ω6=1.5908×10^-20 cm^2, the fluorescence lifetime is calculated to be 2.03 ms for ^3F4 → ^3H6 transition, and the integrated emission cross section is 5.81×10^-18 cm^2. Room-temperature laser action near 2μm under diode pumping is experimentally evaluated in Tm:LSO. An optical-optical conversion efficiency of 9.1% and a slope efficiency of 16.2% are obtained with continuouswave maximum output power of 0.67 W. The emission wavelengths of Tm:LSO laser are centred around 2.06μm with spectral bandwidth of -13.6 nm.  相似文献   
5.
A multi-grating periodically poled LiNb03 (PPLN) doubly resonant optical parametric oscillator (DROPO) pumped by a 2-ttm laser is demonstrated experimentally. Employing acousto-optically Q-switched Tm,Ho:GdV04 laser with pump pulse of 25ns and repetition rate of lOkHz as pump sources firstly, the noncritically quasi- phase-matched (QPM) tunable mid-IR output in 3.87-4.43 μm is produced. Wavelength tuning is achieved with crystal temperature tuning from 50-180^o C. When the incident average pump power is 3 W at 2.048μm, the total OPO output power of 195mW at wavelength 3.88μm is obtained, corresponding to optical-to-optical conversion efficiency up to 6.5%.  相似文献   
6.
We describe a Q-switched Er:GdVO4 laser resonantly pumped by a MgO-doped periodically poled LiNbO3 optical parametric oscillator (MgO: PPLN OPO) at 1536 nm. In continuous-wave lasing, the maximum output power is 1.14 W with an incident pump power of 4.7 W and a slope efficiency of 27%. In Q-switched operation, 1.1 mJ of output pulse energy is achieved at 200 Hz. The upper-state lifetime at different pulse repetition frequencies is also calculated.  相似文献   
7.
报道了一个高效率连续波和调Q高重频两种运行方式的Tm,HoGdVO4激光器.Tm,HoGdVO4晶体尺寸4 mm×4 mm×7 mm,a轴通光,液氮制冷到100 K,由发射中心波长为793 nm的光纤耦合激光二极管端面泵浦.Tm,HoGdVO4激光连续波输出功率4.0 W,光光转换效率26%.声光调Q条件下输出平均高功率3.9 W,脉冲重复频率10 kHz,脉冲宽度50 ns. 通过减小声光Q开关的开启时间,激光脉冲宽度由50 ns减小至23 ns.在10 kHz重频下,测量最大脉冲能量0.39 mJ , 峰值功率7.8 kW.  相似文献   
8.
激光二极管抽运(Tm,Ho)∶YLF激光器光谱特性实验分析   总被引:2,自引:0,他引:2  
Ho∶YLF晶体的5I7和5I8斯塔克能级分裂数较多,形成2047~2070nm宽的增益谱带,对于可调谐2μm激光及宽带激光放大器研究具有重要意义。理论上分析了(Tm,Ho)∶YLF晶体的能级结构,并对晶体掺杂浓度和长度进行了优化。实验研究了激光二极管抽运微片Tm(原子数分数0.06),Ho(原子数分数0.004)∶YLF激光谱线可调谐特性,调谐范围2.0656~2.0671μm。利用(Tm,Ho)∶YLF晶体的宽增益谱特性,将其作为激光二极管抽运激光放大器,成功地将2.048μm(Tm,Ho)∶GdVO4激光功率放大了2.5倍。实验上测量了(Tm,Ho)∶YLF晶体在强抽运条件下480~492nm及530~550nm可见波段的上转换蓝绿光荧光谱。  相似文献   
9.
本文利用有籽晶的HPVGF法生长了尺寸为φb54 mm× 25 mm的高质量CdSe单晶,晶体为纤锌矿结构,(002)和(110)面的XRD摇摆曲线半高宽分别为54.4"和45.6".使用红外显微镜和扫描电镜-能谱分析仪对晶体内部的夹杂相进行测试,表明晶体内部存在小尺寸富Se夹杂相.CdSe晶片在2.5~20 μm范围内的透过率高于68;,平均吸收系数为0.037 cm-1.制备出尺寸为10mm×12 mm×50mm且满足第Ⅱ类相位匹配条件的CdSe晶柱,在重频1 kHz,波长2.09 μm的Ho∶ YAG调Q泵浦源激励下,实现了中心波长为11.47 μm,线宽为33.2 nm的激光输出,最大输出功率为389 mW.  相似文献   
10.
We demonstrate laser ultrasonic generation in polyetheretherketone(PEEK). A middle infrared ZnGeP2 optical parametric oscillator(ZGP-OPO) pumped by a Q-switched Ho:YAG laser is employed as the ultrasonic excitation source. The ZGP-OPO has a spectral range of 3.2–3.4 μm. At an output wavelength of 3.4 μm, the maximum average output power of ZGP-OPO is 3.05 W with a pulse width of 24.3 ns, corresponding to a peak power of approximately 127.5 kW. The ultrasound is generated by the laser converted from 3.2 to 3.4 μm in the PEEK composite. The maximum ultrasonic signal amplitude in PEEK is 33 mV under the condition of thermoelastic excitation at 3.4 μm. Ablation occurs in the CPRF sample when the energy fluence is over 122.45 m J/cm~2. PEEK has a stronger absorption at 3.4 μm and laser-ultrasound generation is influenced by the wavelength of the laser.  相似文献   
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