期刊文献+

纵向抽运液体激光介质热效应研究 被引量:2

Thermal Effect Research of Longitudinally Pumped Liquid Laser Media
原文传递
导出
摘要 大的热折射率系数和热膨胀系数使得染料激光介质的热效应远大于固体激光介质。对抽运时间内增益区液体介质的热效应进行研究,可以为更高功率液体激光器的设计研制和光束质量控制提供参考。根据流动液体能量方程,在抽运光功率由5.9 W增加至12.4 W时,理论计算了纵向抽运时间尺度染料激光器增益区温度场分布,并给出了由温度梯度而引起的信标光波前畸变。信标光的斯特雷尔比由0.9133下降至0.6174。应用波前曲率传感原理,实验测量了染料激光介质罗丹明6 G(Rh6G)乙醇溶液的热效应,采用理论计算相同的抽运功率条件下,增益区内参考光的斯特雷尔比由0.9464下降至0.4883,光束质量下降明显。 The big thermal refractive index coefficient and the thermal expansion coefficient make the thermal effect of liquid laser media greater than those of the solid laser media. Therefore, it is important to study thermal effects of liquid media in gain area during pumping time. According to the energy equation, the wavefront disfortion of the beacon beam induced by the temperature gradient is calculated theoretically in the longitudinal pumping geometry. When the pumping power is increased from 5.9 W to 12.4 W, the Strehl ratio of beacon beam drops from 0. 9133 to 0. 6174. With the application of wave-front curvature sensing theory, the thermal effect of Rh6G is studied experimentally. Under the same pumping condition with those of theoretical calculation, the Strehl ratio of beacon beam drops from 0. 9133 to 0. 6174. The beam quality becomes worse seriously.
出处 《光学学报》 EI CAS CSCD 北大核心 2009年第12期3413-3418,共6页 Acta Optica Sinica
关键词 激光技术 热效应 液体激光介质 光束质量 laser technology thermal effect liquid laser media beam quality
  • 相关文献

参考文献13

二级参考文献50

共引文献46

同被引文献20

  • 1任国光.新型战术高能液体激光器[J].激光技术,2006,30(4):418-421. 被引量:14
  • 2C.Konagai,H.Kimuraa,T.Fukasawa et al..Development of high power dye laser chain [C].SPIE,2000,3886:243-252.
  • 3Louis-André Lompre.High power laser chains used for laser isotope separation [C].SPIE,2000,3886:232-236.
  • 4Isaac L.Bass,Regina E.Bonanno,Richard P.Hackel et al..High-average-power dye laser at Lawrence Livermore National Laboratory [J].Appl.Opt.,1992,31(33):6993-7006.
  • 5K.Takehisa.New designs and simulations of a 10-kW average-power longitudinally pumped dye laser amplifier [J].Appl.Opt.,1994,33(27):6360-6367.
  • 6K.Takehisa,H.Nishimura,A.Miki.Three-dimensional simulation of dye laser amplifiers [J].J.Appl.Phys.,1992,71(3):1109-1114.
  • 7P.R.Hammond.Comparison of experimental and theoretical excited- state spectra for rhodamine 6G[J].IEEE J.Quantum Electron.,1980,QE-16(11):1157-1160.
  • 8F.J.Duarte,Lloyd W.Hillman.Dye Laser Principles with Applications [M].San Diego:Academic Press,INC.,1990,28.
  • 9A.K.Chibisov,T.D.Slavnova.The study of the photophysics and primary photo-chemistry of rhodamine 6G aggregates [J].J.Photochemistry,1975,8(4):285-297.
  • 10王墨戈,许晓军,李霄,郭少锋,陆启生.横向抽运染料激光振荡器效率分析[J].中国激光,2007,34(9):1232-1236. 被引量:1

引证文献2

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部