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固体谐波多波长拉曼激光器 被引量:4

Harmonic Solid Laser Pumped Multi-Wavelength Raman Lasers
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摘要 研究了多谐波固体激光器在气体中的受激拉曼散射 ,获得了多波长激光输出。利用Nd∶YAG激光的二倍频、三倍频及四倍频的激光输出在氢气和甲烷气体中的受激拉曼特性获得多个波长的拉曼输出 ,波长范围覆盖紫外到可见光甚至近红外。列出了常用的几种拉曼工作气体 ,其中氢气和甲烷各有优缺点 ,而两者的混合气体一方面弥补了氢气频移过大的缺点 ,另一方面抑制了甲烷的易分解性。利用缓冲气体和混合气体优化拉曼激光的输出。给出了 2 4个拉曼波长的功率输出数据 ,其中功率较大的有 13个波长。 In this paper, a combinative technology of harmonic solid state laser and stimulated Raman scattering (SRS) has been investigated to obtain multi wavelength laser output with definite power. Multi order harmonics of a Nd∶YAG laser, second harmonic (SH), thrird harmonic (TH) and fourth harmonic (FH) have been employed to generate multiple Raman lines by pumping the gases of hydrogen, methane, etc. The output Raman lines cover waveband from ultraviolet to near infrared. The characteristics of frequently used Raman gases, methane and hydrogen have been discussed, both have advantages and disadvantages. The mixture gas of these two gases makes up the overlarge frequency shift of hydrogen on the one hand, and restrains the decomposition of methane on the other hand. The rare buffer gases and the mixture gas have also been employed to optimize the Raman output. The table of 24 Raman lines is listed in this paper, including 13 lines of rather strong power. Multi wavelength Raman lasers integrating the technologies of SRS and harmonic solid state lasers could be applied in lidar and other application field.
出处 《中国激光》 EI CAS CSCD 北大核心 2004年第8期903-906,共4页 Chinese Journal of Lasers
基金 国家 8 6 3 80 4 6计划 (No .2 0 0 2AA84 6 0 2 0 ) 上海市科技发展基金 (No .0 2 11110 0 0 )资助项目
关键词 非线性光学 拉曼激光器 受激拉曼散射 固体谐波 nonlinear optics Raman laser stimulated Raman scattering (SRS) solid laser harmonics
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参考文献8

  • 1V. Simeonov, V. Mitev, H. van den Bergh et al.. Raman frequency shifting in a CH4 : H2 : Ar mixture pumped by the fourth harmonic of a Nd: YAG laser [J]. Appl. Opt. , 1998, 37(30):7112-7115.
  • 2Z. Chu, U. N. Singh, T. D. Wilkerson. Multiple Stokes wavelength generation in H2, D2, and CH4 for lidar aerosol measurements [J]. Appl. Opt. , 1991, 30(30):4350-4357.
  • 3J. A. Sunesson, A. Apituley, D. P. J. Swart. Differential absorption lidar system for routine monitoring of tropospheric ozone[J]. Appl. Opt. , 1994, 33(30):7045-7058.
  • 4S. E. Bisson. Parametric study of an excimer-pumped, nitrogen Raman shifter for lidar applications [J]. Appl. Opt. , 1995, 34(18) :3406-3412.
  • 5E. J. Lerner. Lasers probe global climate from space [J]. Laser Focus World, 2002, 38(10) :95-100.
  • 6A. B. Davis, S. P. Love, R. F. Cahalan et al.. Off-beam lidar senses cloud thickness and density [J]. Laser Focus World,2002, 38(10):101-104.
  • 7王志恩,胡欢陵,周军.双差分吸收激光雷达:一种能有效减小气溶胶对臭氧测量影响的方法[J].气象学报,1996,54(4):437-446. 被引量:8
  • 8叶震寰,楼祺洪,董景星,朱晓峥,魏运荣.甲烷和氢气混合气体中的多波长拉曼转换[J].中国激光,2004,31(6):677-680. 被引量:6

二级参考文献8

  • 1王志恩,胡欢陵,周军.双差分吸收激光雷达:一种能有效减小气溶胶对臭氧测量影响的方法[J].气象学报,1996,54(4):437-446. 被引量:8
  • 2V. Simeonov, W. Mitev, H. van den Bergh et al.. Raman frequency shifting in a CH4: Hz : Ar mixture pumped by the fourth harmonic of a Nd:YAG laser [J]. Appl. Opt. , 1998, 37(30) :7112-7115.
  • 3Zhiping Chu, U. N. Singh, T. D. Wilkerson. Multiple Stokes wavelength generation in Hz, Dz, and CH4 for lidar aerosol measurements[J]. Appl. Opt., 1991, 30(30):4350-4357.
  • 4J. A. Sunesson, A. Apituley, D. P. J. Swart. Differential absorption lidar system for routine monitoring of tropospheric ozone [J]. Appl. Opt., 1994, 33(30):7045-7058.
  • 5S. E. Bisson. Parametric study of an excimer-pumped, nitrogen Raman shifter for lidar applications [J]- Appl. Opt. , 1995, 34(18) :3406-3412.
  • 6E. J. Lerner. Lasers probe global climate from space [J]. Laser Focus World, 2002, 38(10) :95-100.
  • 7A. B. Davis, S. P. Love, R. F. Cahalan et al.. Off-beam lidar senses cloud thickness and density [J]. Laser Focus World,2002, 38(10) :101-104.
  • 8朱晓峥,楼祺洪,叶震寰,董景星,魏运荣.固体三倍频激光在高压H_2中受激拉曼散射的实验研究[J].中国激光,2003,30(9):819-822. 被引量:4

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