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Cr^(4+):YAG激光器的研究与应用

Research and Applications of Cr^(4+):YAG Laser
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摘要 Cr4+:YAG晶体具有很稳定的物理和化学性质,做为激光器的增益介质采用多种抽运源进行抽运。Cr4+:YAG固态激光器的性能稳定、结构紧凑,能产生超短光脉冲并可以对激光输出波长在1300-1600nm之间进行调谐,它是光纤通信与量子通信的理想波段,也是人眼的安全波段。 With stable physicochemical property, the Cr^4+:YAG crystal as gain medium of a solid-state laser, can be bumped with different bump sources. The Cr^4+:YAG laser is stable, compact, and can output ultrashort laser pulse, the wavelength of which can be tuned in the rang of 1300-1600 nm, which is the ideal wave band in the fiber commtmication and quantum communication, and also the secure wave band for eyes.
出处 《激光与光电子学进展》 CSCD 北大核心 2006年第2期42-45,共4页 Laser & Optoelectronics Progress
关键词 激光技术 CR^4+:YAG晶体 CR^4+:YAG激光器 laser technique Cr^4+:YAGcrystals Cr^4+:YAG laser
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参考文献14

  • 1Angert N B,Borodin N I,Garmash V M et al..Lasing due to impurity color centers in yttrium alminum garnet crystals at wavelengths in the range 1.35~1.45μm.Sov.J.Quantum Electron.,1988,18:73~74.
  • 2French M W,Rizvi N H,Taylor J R.Continuous-wave mode-locked Cr^4+:YAG laser.Opt.Lett.,1993,18(1):39~41.
  • 3Alphan Sennaroglu,Pollock C R.Efficient continuous-wave chromium-doped YAG laser.J.Opt.Soc.Am.B,1995,12(5):930~937.
  • 4Hergen Eilers,Dennis W M,Yen W M et al..Performance of a Cr:YAG laser.IEEE J.Quantum Electron.,1993,29 (9):2508~2512.
  • 5Collings B C,K.Bergman.True fundamental solitons in a passively mode-locked short-cavity Cr^4+:YAG laser.Opt.Lett.,1997,22(14):1098~1100.
  • 6Ripin D J,Chudoba C,Gopinath J T et al..Generation of 20-fs-pulses by a prismless Cr^4+:YAG laser.Opt.Lett.,2002,27(1):61~63.
  • 7Schibli R,Kremp T,Morgner U et al..Cotinuous-wave operation and Q-switched mode locking of Cr^4+:YAG microchip lasers.Opt.Lett.,2001,26(12):941~943.
  • 8Sorokina T,Naumov S,Sorokin E et al..Directly diode-pumped tunable continuous-wave room-temperature Cr^4+:YAG laser.Opt.Lett.,1999,24(22):1578~1580.
  • 9Alcock A J,Sorach P,Hnatovsky K.Broadly tunable continuous-wave diode-pumped Cr^4+:YAG laser.Opt.Comm.,2003,215:153~157.
  • 10Leburn C G,Lagatsky A A,A.Brown C T et al..Femtosecond Cr^4+:YAG laser with 4GHz pulse repetition rate.Electron.Lett.,2004,40(13):805~807.

二级参考文献23

  • 1Shestakov A V, Bordin N I, Zhitnyuk V A, et al. Conference on Lasers and Electro-Optics, 1991,10 OSA Technical Digest Series ( Optical society of America, Washington. DC 1991 ).
  • 2Ishida Y, Naganuma K. Characteristics of femtosecond pulses near 1. 5 /μm in a self-mode-locked Cr^4+:YAG laser. Opt Lett, 1994,19 (23) : 2003 - 2005.
  • 3Zhang Zhigang ,Nakagawa T,Torizuka K,et al. Self-starting mode-locked Cr^4+ :YAG laser with a low-loss broadband semiconductor saturable-absorber mirror. Opt Lett, 1999,24(23) : 1768 - 1770.
  • 4Ripin D J , Chudoba C , Gopinath J T , et al. Generation of 20 fs pulses by a prismless Cr^4+:YAG laser. Opt Lett,2002,27(1) :61 -63.
  • 5Fork R L, Martinez O E, Gordon J P. Negative dispersion using pairs of prisms. Opt Left,1984,9(5) :150 - 152.
  • 6KELLERU,KNOXWH,THOOFTGH.Ultrafast solid-statemode-locked lasers using resonant nonlinearities [J].IEEE J Q E,1992,28:2123-2133.
  • 7KELLERU,CHIUTH,FERGUSONJF.Self-starting and self- Q -switching dynamics of passively mode-locked Nd:YLF and Nd:YAG lasers [J].Opt Lett,1993,18:217-219.
  • 8TSUDA S,KNOX W H,de SOUZA E A et al. Low-loss intracavity AlAs/AlGaAs saturable Bragg reflector for femtosecond mode locking in solide-state lasers [J].Opt Lett,1995,20:1406-1408.
  • 9COLLINGS B C,STARK J B,TSUDA S et al .Saturable Bragg reflector self-starting passive mode locking of a Cr4+:YAG laser pumped with a diode-pumped Nd:YVO4 laser [J].Opt Lett,1996,21:1171-1173.
  • 10SPALTER S,BOHM M,BURK M et al .Self-starting soliton-mode-locked femtosecond Cr4+:YAG laser using an antiresonant Fabry-Perot saturable absorber [J].Appl Phys,1997,B65:335-338.

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