中国激光, 2008, 35 (7): 972, 网络出版: 2008-07-04   

全固态激光器14 kHz Q脉冲实验研究

Laser Diode Pumped Solid State Laser with 14 kHz Q Pulse Output
作者单位
1 中国科学院长春光学精密机械与物理研究所, 吉林 长春 130031
2 沈阳理工大学理学院, 辽宁 沈阳 110168
3 中国科学院研究生院, 北京 100039
摘要
在激光二极管抽运固体激光器(DPSSL)中设计一种由无刷电机驱动, 采用棱镜作为旋转反射镜的转镜Q开关。设计了20只棱镜的转盘, 获得重复频率14.3 kHz的激光脉冲, 实现了千赫兹高重复频率大功率关断能力的Q开关技术。在逐步提高转镜转速来缩短Q开关时间的实验中, 激光脉冲序列相应递减, 当棱镜转镜转速为4.3×104 r/min时, 获得脉宽89 ns, 重复频率14.3 kHz的1064 nm高重复频率脉冲输出。当输入功率为795 W时, 获得平均功率100 W脉冲输出, 电-光转换效率为12.5%, 峰值功率达到78.3 kW。实验结果说明, 棱镜转镜Q开关是实现全固态激光器千赫兹Q脉冲输出的可行技术途径之一。
Abstract
A high speed spinning prism Q-switch driven by a brushless direct current (DC) motor (BLDC) has been designed with right-angle reflector in laser diode pumped solid state laser (DPSSL). Some laser pulse series disappear gradually and the number of the output pulses decreases gradually as decreasing the Q-switch shutting period with the increased spinning speed in the experiment, and as increasing the number of the prism to get to high pulse repetition rate, a spinning disk has been designed with 20 prisms, so at the spinning speed of 4.3×104 r/min, the minimum pulse duration is 89 ns, and the repetition rate is 14.3 kHz at the wavelength of 1064 nm. When the pumping power was 795 W, the output peak power of 78.3 kW was obtained at the repetition rate of 20 kHz, and the average output power of 100 W, electro-optic conversion of 12.5% were realized. The preliminary experimental results show that the spinning prism Q-switch as a feasible technology of kilohertz Q pulse plays an important turning-off-ability role in the high repetition rate and high-power DPSSL.
参考文献

[1] Li Qiang, Zheng Yijun, Wang Zhiyong et al.. Improving switch loss of Nd:YAG laser by double acousto-optic devices two-dimensional Q-switch [J]. Chinese J. Lasers, 2003, 30(9):795~798
李强, 郑义军, 王智勇 等. 双声光二维Q开关提高Nd:YAG激光器关断损耗[J]. 中国激光, 2003, 30(9):785~788

[2] Li Xudong, Yu Xin, Yu Junhua et al.. Laser diode double-end-pumped acousto-optically Q-switched Nd:GdVO4 laser with high repetition rate [J]. Chinese J. Lasers, 2007, 34(4):461~464
李旭东,于欣,于俊华 等. 激光二极管双端抽运声光调Q高重复频率Nd:GdVO4激光器[J]. 中国激光, 2007, 34(4):461~464

[3] Li Gang, Wang Fei, Yu Xin et al.. The research of increasing AO Q-switch′s ability of switching in Nd:YAG laser by quarter-waveplate [J]. Acta Photonica Sinica, 2006, 35(4):490~493
李港, 王菲, 于欣 等. 波片提高声光Q开关关断Nd:YAG激光能力研究[J]. 光子学报, 2006, 35(4):490~493

[4] Feng Lichun, Huo Yujing, He Shufang et al.. LD-pumped acousto-optically Q-switched 532 nm laser with high repetition rate [J]. Chinese J. Lasers, 2005, 32(4):461~465
冯立春, 霍玉晶, 何淑芳 等. 激光二极管抽运声光调Q高重复频率532 nm激光器[J]. 中国激光, 2005, 32(4):461~465

[5] Hu Wentao, Zhou Fuzheng, Chen Youming et al.. A CW and high repetitive Q-switched Nd:YAG laser pumped by laser diode array [J]. Acta Optica Sinica, 1994, 14(12):1281~1284
胡文涛,周复正, 陈有明 等. LD泵浦Nd:YAG激光器的连续激光输出和高重复率调Q[J]. 光学学报, 1994, 14(12):1281~1284

[6] . Development of EM field in lasers with rotating mirror Q-switch[J]. IEEE J. Quantum Electron., 1993, 29(8): 2405-2412.

[7] Helena Jelínková, Michal Němec, Jan ulc et al.. Er:YAG laser giant pulse generation [C]. SPIE, 2002, 4903:227~232

[8] . . Laser properties of rotating prism Q-switched Cr3+,Yb3+,Er3+:phosphate glasses[J]. Acta Physica Sinica, 2005, 54(9): 4422-4426.

[9] Song Yanrong, Liu Yuanyuan, Li Ruining et al.. Q-switch laser using two synchronizating turned mirrors [J]. Acta Sinica Quantum Optica, 2000, 6(3):110~112
宋晏蓉,刘媛媛,李瑞宁 等. 同步双转镜调Q激光器[J]. 量子光子学报, 2000, 6(3):110~112

[10] Wan Daping, Wang Yumin, Gui Zhenxing et al.. A novel method for stability analysis and design of laser folded cavity [J]. Chinese J. Lasers, 2007, 34(9):1217~1221
万大平,王裕民,归振兴 等. 一种激光折叠腔稳定性分析及设计的新方法[J]. 中国激光, 2007, 34(9):1217~1221

[11] Eric J. Woodbury. 7.3-five kilohertz repetition-rate pulsed YAG:Nd laser [J]. IEEE J.Quantum Electron., 1967, QE-3:509

王希军, 岱钦, 耿小涛, 李德胜, 苏少昌, 王亚军. 全固态激光器14 kHz Q脉冲实验研究[J]. 中国激光, 2008, 35(7): 972. Wang Xijun, Dai Qin, Geng Xiaotao, Li Desheng, Su Shaochang, Wang Yajun. Laser Diode Pumped Solid State Laser with 14 kHz Q Pulse Output[J]. Chinese Journal of Lasers, 2008, 35(7): 972.

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