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全固态589nm激光器及其钠导星激发亮度

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全固态589nm激光器及其钠导星激发亮度 第22卷
第12期
2014年12月
文章编号
1004-924X(2014)12-319906
光学精密工程
Optics and Precision Engineering
Vol,22No.12
Dec., 2014
全固态589nm激光器及其钠导星激发亮度
刘杰1,2,王建立,吕天宇1,孙敬伟",董磊1
(1.中国科学院长春光学精密机械与物理研究所,吉林长春130033;2.中国科学院大学,北京100049)捕要:研制了一台LD侧面泵铺和腔内和频结构的小型全固态589nm激光器,报道了利用该激光器激发钠导星亮度的实验研究结果。通过数值模拟分析并设计了谐振腔腔长、晶体位置等,使其具有体积小,转换效率高等特点。研制了一套时域匹配电源用于补偿两路激光脉冲的时间差。对分束镜双侧进行特殊镀膜,获得了相应的线偏振光并提高了转换效率和热稳定性。采用插人标准具、特殊镀膜等技术抑制了1338nm谱线的振荡。最后设计了相应的发射望远镜和接收系统用于钠激光导星的观测。测试结果表明,该激光器的输出功率大于8W,重复频率为5kHz,线宽小于3.5GHz,
对应808nm泵浦功率的转换效率达到2%。在长春市内天光背景下,冬季实验激发的导星亮度可达10.0等。关键调:全固态激光器;腔内和频;激光导星;自适应光学
中图分类号:TN248.1
文献标识码:A
doi;10.3788/OPE.20142212.3199
All-solid-state589nmlaserandthebrightness
ofexcitedsodiumguidestar
LIU Jiel2,WANG Jian-li',LU Tian-yu',SUN Jing-wei',DONG Lei
(l.ChangchunInstitute of Optics,FineMechanics and Physics, ChineseAcademyof Sciences,Changchun130033,China;
2.University of Chinese Academy of Sciences,Beijing 100049,China)
*Correspondingauthor,E-mail:liujie@ciomp.ac.cn
Abstract: A LD side-pumped 589 nm small-scale all-solid-state laser with an intra-cavity sum-frequen cy structure was developed and the experiments for exciting the brightness of a sodium guide star by the laser were described. The numerical simulation method was employed to analyze and design the cavity length and the position of a sum-frequency crystal, and it shows a smaller size and higher con-version efficiency. A synchronous power system in time domain was developed to compensate the de-lay between pulses of the two fundamental lasers. Special films were coated on the sides of the splitter mirror to obtain linear polarized laser as well as to increase the conversion efficiency and the thermal stability. Moreover, etalons and special coating methods were employed to suppress the oscillation of 1 338 nm spectral line, Finally, a dedicated launch telescope and a receive system were used for the generation and observation of sodium guide star.Test results show that the laser offers an output power more than 8 W, a repetition frequency of 5 kHz and the linewidth less than 3. 5 GHz, mean-
收稿日期:2014-05-05;修订日期:2014-05-26
基金项目:国家863高技术研究发展计划资助项目(No.2012AAXXX1003X)
上一章:压电陶瓷驱动器的迟滞特性 下一章:压电作动器的率相关迟滞建模与跟踪控制

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