期刊文献+

50瓦铜蒸气激光器放电管设计

The design on 50 Watts copper laser's discharge tube
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摘要 激光放电管是铜蒸气激光器的关键部件,激光放电管的设计优劣直接影响着铜蒸气激光器的研制。本文主要描述了50瓦铜蒸气激光器激光放电管的设计过程,对放电管的绝热层进行了热计算,结合实际情况得到了结构参数。对放电管的真空密封、缓冲气体循环系统、水冷套等部件进行了设计,给出了各部件的具体结构形式。用该激光放电管进行实验研究,振荡级功率稳定在36瓦以上,用作放大级时平均提取功率达到了52瓦。 The discharge tube is a key component in a copper vapor laser(CVL).A 50 watts CVL s discharge tube was designed in this paper.Using the theory of thermodynamics,the physical sizes of the discharge tube and the heat insulator were obtained.The details of the configuration of main parts of the 50 watts CVL,such as vacuum gland,circulating system of the buffer gas and the water-cooling structure were also considered.The experimental results show that the output power of this CVL is up to 36 watts as an oscilla...
出处 《激光杂志》 CAS CSCD 北大核心 2008年第4期7-9,共3页 Laser Journal
关键词 激光器与激光光学 金属蒸气激光器 铜蒸气激光器 放电管 lasers and laser optics metal vapor laser copper vapor laser discharge tube
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参考文献16

  • 1[1]R.Steven Hargrove and Tehmau Kan.High power efficient dye ampli-fier pumped by copper vapor lasers[J].IEEE Journal d Quantum Elec-tronics,1980,QE-16(10):1108-1113.
  • 2[2]Richard P.Hackel,Bruce E.Warner.The copper-pumped dye laser system at Lawrence Livermore National Laboratory[C].SPIE,1993,1859:121-129.
  • 3[3]Sunita Singh and Kamalesh Dasgupta.High power high repetition rate copper vapor pumped dye laser[J].Optical Engineering,1994,33(6):1894-1903.
  • 4[4]M.Knowles,R.Benfield,A.Andrews,A.Kearsley.Development of high power compact kinetically enhanced copper vapor lasers[C].Pro-ceedings of Laser Material Processing Conference,Vol.89,ICALEO,Laser Institute of America,2000,B-173-178.
  • 5[5]O.V.Zhdaneev,A.M.Boichenko,G.S.Evtushenko,S.I.Yakolenko.Mathematical modelling of copper vapor laser[C].Pro-ceedings of the Fifth Korea-Russian International Symposium on Science and Technology,Vol.1,Tomsk,Russia,2001,298-302.
  • 6[6]M.J.Withford,D.J.W.Brown,J.A.Piper.Repetition rate scaling of a kinetically enhanced copper vapor laser[J].Optics Letters,1998,23:1538-1540.
  • 7[7]Yasushi ISEKI,Ikuo WATANABEI and Etsuo NODA.Characteristics of a 100-mm-Bore Copper Vapor Laser and Their Prediction by a Gas Cooling Medel[J].Jpn.J.Appl.Phys.,2002,41:5187-5192.
  • 8佳水.高功率铜蒸气激光系统的研制与开发[J].激光与光电子学进展,2002,39(2):33-39. 被引量:1
  • 9陶永祥,尹宪华,陈林,汤星里.铜蒸气激光器的绝热结构对有效增益区的影响[J].中国激光,1997,24(2):105-107. 被引量:3
  • 10尹宪华,陶永祥,陈林,杨天立,施懿范,汤星里.大口径铜蒸气激光器的研究[J].中国激光,1997,24(4):293-296. 被引量:6

二级参考文献23

  • 1陶永祥,尹宪华.100W铜蒸气激光器[J].激光与光电子学进展,1996(7):189-193. 被引量:3
  • 2杨世铭,传热学(第2版),1993年,39页
  • 3N.Morioka.R&D on AVLIS component.RTM-88-10,1998.1-6 (in Japanese)
  • 4N.Morioka,H.Hamada,N.Arai et al..Laser uranium enrichment with atomic vapor.Oyobuturi (Appl.Phys.),1988,58(2): 249-257 (in Chinese)
  • 5J.L.Emmett,W.F.Krupke,J.I.Davis.Laser R&D at the Lawrence Livermore National Laboratory for fusion and isotope separation applications.IEEE J.Quantum Electron.,1984,QE-20:591-602
  • 6N.Morioka.New Japanese AVLIS program.Proc.SPIE ,1993,1859:2-13
  • 7A.Bettiner,M.Neu,J.Maury et al..SILVA Program.Proc.SPIE ,1993,1859:108-117
  • 8J.A.Paisner.Atomic vapor laser isotope separation.Appl.Phys.B,1988,46:253-260
  • 9P.T.Greenland.Laser isotope separation.Contemporary Phys.,1990,31:405-424
  • 10W.T.Walter,N.Solimene,M.Piltch et al..Copper vapor laser.IEEE J.Quantum Electron.,1966,QE-2:474

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