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1. 中国科学院长春光学机密机械与物理研究所,吉林 长春,130022
2. 中国科学院 研究生院 北京,100039
收稿日期:2005-09-22,
修回日期:2006-06-20,
纸质出版日期:2006
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郝二娟, 檀慧明, 李特, 苗杰光, 付喜宏, 钱龙生. LD端面泵浦的高输出单频Nd∶YVO<sub>4</sub>绿光激光器[J]. 光学精密工程, 2006,14(4): 580-583
HAO Er-juan, TAN Hui-ming, LI Te, MIAO Jie-guang, FU Xi-hong, QIAN Long-sheng. High output and single-frequency ring Nd∶YVO<sub>4</sub> laser end-pumped by diode laser[J]. Editorial Office of Optics and Precision Engineering, 2006,14(4): 580-583
郝二娟, 檀慧明, 李特, 苗杰光, 付喜宏, 钱龙生. LD端面泵浦的高输出单频Nd∶YVO<sub>4</sub>绿光激光器[J]. 光学精密工程, 2006,14(4): 580-583 DOI:
HAO Er-juan, TAN Hui-ming, LI Te, MIAO Jie-guang, FU Xi-hong, QIAN Long-sheng. High output and single-frequency ring Nd∶YVO<sub>4</sub> laser end-pumped by diode laser[J]. Editorial Office of Optics and Precision Engineering, 2006,14(4): 580-583 DOI:
用激光二极管(LD)抽运Nd∶YVO
4晶体
采用四镜环形腔结构
腔内放置由法拉第旋光器
/2波片及布氏片组成的光学单向器
利用KTP内腔倍频技术
实现了高输出单频Nd∶YVO
4
绿光激光器及稳定的单频激光输出。在9 W的泵浦功率下
最大单频绿光输出为1.1 W
光-光转化效率为12.2%。在腔内插入Cr
4+
∶YAG晶体
又获得了脉宽为100 ns
重复频率为21 kHz的单纵模被动调
Q
激光输出。
A frequency-stability and intracavity frequency-doubled ring Nd∶YVO
4
/KTP laser end-pumped by a laser diode was designed and experimentally demonstrated. The laser was single-frequency operated by using a TGG
a Brewster polarizer
and a half-wave plate acted as optical diode in the cavity. Under the incident power of 9 W
the maximum green laser output is 1.1W
and conversion efficiency from light to light is 12.2%. Also
a passively
Q
-switched single-frequency laser in laser pulse duration of 100 ns and repetition rate of 21 kHz was achieved in a ring cavity by inserting a piece of Cr
4+
∶YAG as an intracavity laser pulse saturable absorber.
吕彦飞,檀慧明,钱龙生. 全固态589 nm复合腔连续波和频激光器[J]. 光学 精密工程,2005,13(3):260-264. LU Y F,TAN H M,QIAN L SH. All-solid-state continuous- wave doubly resonant all intra-cavity sum-frequency laser at 589 nm.[J]. Optics and Precision Engineering,2005, 13(3): 260- 264. (in Chinese)[2] 张靖,张宽收,王润林,等. 全固化单频Nd∶YVO4环形激光器[J]. 中国激光,2000,A27(8):694-696. ZHANG J,ZHANG K SH,WANG R L, et al. All-solid-state Nd∶YVO4 ring Laser of single-frequency operation[J].Chinese Journal Of Lasers,2000;A 27(8):694-696. (in Chinese)[3] 毕 勇 ,孙志培 ,李瑞宁 ,等. 高平均功率腔内和频蓝光Nd∶YAG激光器[J]. 光学 精密工程 ,2005,13(1):16-21. BI Y,SUN ZH P, LI R N,et al. High power blue Nd∶YAG laser by intracavity summing frequency[J].Opt.and Laser Tech.,2005,13(1):15-25.(in Chinese)[4] WU E,PAN H,ZHANG S,et al.High power single-longitudinal-mode operation in a twisted-mode-cavity laser with a c-cut Nd∶GdVO4 crystal . Appl. Phys., 2005:1-4.[5] 郑义,钱卫红,姚建铨. LD泵浦的内腔倍频激光器单频运转的理论研究[J]. 中国激光,1997, 24(8):673-678. ZHENG Y,QIAN W H,YAO J Q. Theoretical study on the single-frequency operation of diode-pumped intracavity frequency-doubled laser[J].Chinese Journal of Lasers,1997; 24(8):673-678. (in Chinese)[6] NAGAI H,KUME M. Low-noise operation of a diode-pumped intracavity-doubled Nd∶YAG laser using a Brewster plate [J]. IEEE J. of Quant. Electro., 1992, 28(4):1164-1168.[7] HARDMAN P J,CLARKSON W A,HANNA D D.High-power diode-bar-pumped intracavity-frequency-doubled Nd:YLF laser[J].Optics Communications, 1998, 156:49-52.[8] 万顺平,孙利群,田芊. 一种LD泵浦双向输出固体环形激光器[J]. 光学技术,2005,31(1):44-47. WAN SH P, SUN L Q, TIAN Q.LD-pumped solid-state ring laser with bidirectional outputs[J].Optical Technique, 2005,31(1):44-47.(in Chinese)[9] INNOCENZI M E,YURA H T,FINCHER C L. Thermal modeling of continous-wave end-pumped solid-state lasers[J].Phys.Lett.,1990, 56(19):1831-1833.[10] 刘均海,吕军华,卢建仁,等. 高功率端面抽运Nd∶YVO4固体激光器模式匹配的研究[J]. 光学学报,2000,20(2):186-189. LIU J H, LU J H, LU J R,et al. Mode matching in high-power laser-diode-array end-pumped Nd:YVO4 solid-state lasers[J]. Acta Optica Sinica, 2000, 20(2): 186-189.(in Chinese)[11] 吕百达.激光光学[M]. 第三版,高等教育出版社,2002. LU B D.Laser optics[M]. (the third edition) High Education Press, 2002.(in Chinese)
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