期刊文献+

固定夹角反射镜扫描化学激光器小信号增益测量装置 被引量:2

Fixed angle plane reflective mirrors scanning measurements for laser small signal gain
下载PDF
导出
摘要 推导了一种新型1维快速扫描组件———固定夹角反射镜的原理,计算出了其对应于典型扫描距离10cm和6cm时的优化参数。并以此扫描组件为基础设计组装了化学激光器小信号增益系数1维快速扫描测量装置,该装置尺寸较小,使用比较方便,可以满足连续波DF/HF化学激光性能研究的需要,且对其扫描组件进行相应的改进,也可用于气动CO2激光器和COIL小信号增益系数的研究。 The principle of a new one dimensional scanning apparatus named fixed angle plane reflective mirrors has been deduced and its optimized parameters of typical scanning distance of 10 cm and 6 cm have been calculated. Based on this scanning apparatus, one dimensional scanning measurement apparatus for chemical laser small signal gain coefficient has been designed and manufactured. The apparatus can embody two aspects, small size and convenience of utility. It can meet the need for continue wave DF/HF chemical laser research. If some improvement is made to the scanning components, the measurement apparatus could be used in CO2 laser and COIL research.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2005年第7期1013-1015,共3页 High Power Laser and Particle Beams
基金 国家自然科学基金资助课题(10304025)
关键词 化学激光器 小信号增益系数 反射镜扫描 Chemical laser Small signal gain coefficient Fixed angle plane reflective mirrors
  • 相关文献

参考文献5

  • 1多丽萍,闵祥德,孙以珠,桑凤亭,王麟,杨柏龄,庄琦.转镜扫描测量超音速氧碘化学激光器二维增益分布[J].强激光与粒子束,1999,11(4):385-388. 被引量:7
  • 2Chodzko R A, Spencer D J, Mirrels H, et al. Zero-power-gain measurements in CW HF(DF) laser by means of a fast scan technique[J].IEEE J Quant Electr, 1976, 12(11): 660-664.
  • 3黄瑞平 孙以珠 桑凤亭.连续波HF化学激光器小信号增益的测量[J].中国激光,1984,11(5):281-282.
  • 4Farey M E,Chodzko R A. Resonant galvanometer driven two dimensional gain seanner[P]. Patent No. US 6,320,895 B1,2001.
  • 5Yano T K, Bobiteh M H. Small-signal gain measurements in a CW chemical laser[J]. IEEE J Quant Electr, 1978, 14(1), 12-16.

二级参考文献6

  • 1多丽萍 杨柏龄.-[J].中国激光,1993,20(10):33-33.
  • 2潘文全.流体力学基础[M].北京:机械工业出版社,1986.206.
  • 3Duo Liping,IEEE J Quant Electron,1998年,34卷,7期,1065页
  • 4多丽萍,中国激光,1993年,20卷,10期,33页
  • 5潘文全,流体力学基础,1986年,206页
  • 6Copeland D A,SPIE,2989页

共引文献6

同被引文献21

  • 1唐力铁.一种测量平均小信号增益及饱和光强方法[J].红外与激光工程,2006,35(z3):339-341. 被引量:2
  • 2孙以珠,桑凤亭,李富岭,多丽萍,詹际平,庄琦.连续波氧碘化学激光器小信号增益的测量[J].强激光与粒子束,1993,5(4):485-488. 被引量:1
  • 3Waldo R E,Betts J A,Hartlove J S.Small signal gain measurements on the HYLTE water-cooled module[R].AIAA Paper,2001-2864.
  • 4Wisniewski C F,Manke G C,Hager G D,et al.Tunable diode laser gain measurements of the HF(2-0) overtone transitions in a small scale HF laser[R].AIAA Paper,2002-2267.
  • 5格罗斯 R W F,博特 J F.化学激光手册[M].北京:科学出版社,1987.
  • 6Mankel] G C, Cooper C B, Dass S C, et al . A multiwatt all gas phase iodine laser (AGIL)[J]. Quantum Electron, 2003, 39(8) :995-1002.
  • 7Du Liping, Tang Shukai, Yu Haijun, et al. DC discharge characteristics and fluorine atom yield in NFa/He [J]. Chinese Optics Letters, 2006,4(3) ~ 170-172.
  • 8Carroll D L, Verdeyen J T, King D M, et al. Continuous wave laser oscillation on the 1315 nm transition of atomic iodine pumped by 02 (alA) produced in an electric discharge [J]. ApplPhys Lett, 2005, 86:11104.
  • 9Wisniewski C F, Hewett K B , Manke l] G C, et al. Small signal gain measurement in a small scale HF overtone laser[J]. Applied Physics, 2003, 77(2) :337-342.
  • 10Shimabukuro F I, King S R, Hartwick T S, et al. Atmospheric transmission measurements at HF and DF laser wavelengths[J]. Applied Optics, 1976, 15(5) ~1115-1117.

引证文献2

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