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一种单级拉曼光纤激光器的实现方案 被引量:2

Implement Scheme of a Single-stage Raman Fiber Laser
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摘要 介绍了一种高效率、简洁的单级拉曼光纤激光器的结构及其数值模拟结果.利用1342nm的Nd:YVO_4固体激光器作为泵源,耦合入纤功率设为1W,经过单级拉曼平移,光纤输出功率大约0.5W、波长为1426nm的激光。 In this paper the configuration of a high- efficiency, simple, single-stage Raman fiber laser is presented, and it is theoretically simulated and analyzed. With 1 W Nd:YV04 solid laser pumping at 1342 nm, single mode output power about 0.5 W is simulated operating at 1426 nm.
出处 《光电子技术与信息》 CAS 2003年第3期15-19,共5页 Optoelectronic Technology & Information
基金 国家863计划基金(2002AA31228Z)
关键词 单级拉曼光纤激光器 Nd:YVO45 波分复用 数值模拟 single-stage RFL Nd:YVO4 WDM numerical simulation
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  • 1[1]R.H.Stolen,E.R.Ippen,A.R.Tynes,Appl.Phys.Lett.,1972,20:62-4
  • 2[2]R.K.Jain,C.Lin,Stolen.R.H,et al.,Appl.Phys.Lett.,1977,30:162-164
  • 3[3]E.M.Dianov,D.G.Fursa,A.A.abramov,et al.,Quantum Electron.,1994,24:749-751
  • 4[4]S.G.Grubb.,T.Erdogan,Y.Mizrahi,T.Strasser,et al.,OSA Technical Digest Series(Optical Society of America,Washington,D.C.),1994,14:PD-3
  • 5[5]S.G.Grubb,T.Strasser,W.Y.Cheung,et al.,OSA Tends in Optics and Photonics Series(Optical Society of America,Washington,D.C.),1995,5:S.S4
  • 6[6]D.R.Dykaar,S.G.Grubb,J.Simpson,et al.,OFC′95(San Diego,California,1995),1995,Psot-Deadline Papers:PD1
  • 7[7]E.M.Dianov,M.V.Grekov,I.A.Bufetov,et al.,Electronics Letters,1997,33(18):1542-1543
  • 8[8]V.I.Karpov,E.M.Dianov,O.I.Paramonov,et al.,Optics Letters,1999,24(13):887-889
  • 9[9]E.M.Dianov,I.A.Bufetov,M.M.Bubnov,et al.,Optics Letters,2000,25(6):402-404
  • 10[10]N.S.Kim,M.Prabhu,Li Cheng,et al.,Optics Communications,2000,176:219-222

共引文献7

同被引文献14

  • 1杜戈果,邓莹,陈慧玲,姜连勃,阮双琛,朱勤.拉曼光纤激光器的初步研究[J].激光与红外,2004,34(3):169-171. 被引量:4
  • 2陈晴川,王英.固体激光器泵浦输出波长在1428nm的单级拉曼光纤激光器[J].光学与光电技术,2004,2(6):48-50. 被引量:1
  • 3张敏明,刘德明,王英,黄德修.用于光纤拉曼放大器抽运源的单级光纤拉曼激光器[J].光学学报,2005,25(12):1634-1638. 被引量:8
  • 4Yucheng Zhao,Yahua Li,Stuart D.Jackson.Grating-free nth order cascaded Raman fibre lasers using highly Ge-doped low loss fibre[J].Opt.Express,2004,12(17): 4053-4058.
  • 5Yan Feng,Senghong Huang,A.Shirakawa et al..589 nm light source based on Raman fiber laser[J].Jpn.J.Appl.Phys.,2004,43(6A): L722-L724.
  • 6S.A.Babin,V.Kalekas,E.V.Podivilov et al..Turbulent broadening of optical spectra in ultralong Raman fiber lasers[J].Phys.Rev.A,2008,77(3): 033803.
  • 7Erik Bélanger,Martin Bernier,Dominic Faucher et al..High-power and widely tunable all-fiber Raman laser[J].J.Lightwave Technol.,2008,26(12): 1696-1710.
  • 8S.K.Turitsyn,J.D.Ania-Castanon,S.A.Babin.270-km ultralong Raman fiber laser[J].Phys.Rev.Lett.,2009,103(13): 133901.
  • 9Z.Xiong,N.Moore,Z.G.Li et al..Experimental optimization of high power Raman fiber lasers at 1495 nm using phosphosilicate fibers[J].Opt.Commun.,2004,239(1-3): 137-145.
  • 10G.P.Agrawal.非线性光纤光学原理及其应用[M].贾东方,余震虹 译.北京: 电子工业出版社,2002.192-193.

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