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Er^(3+):Yb^(3+):GdAl_3(BO_3)_4晶体1.5~1.6μm波段激光性能 被引量:3

Laser Performance of Er^(3+):Yb^(3+):GdAl_3(BO_3)_4 Crystal at 1.5~1.6 μm
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摘要 采用熔盐法获得了Yb3+和Er3+离子原子数分数分别为20%和1.1%的GdAl3(BO3)4(简称GAB)晶体.在平-凹谐振腔中,利用0.97μm波长光纤耦合准连续(CW)半导体激光端面抽运0.7 mm厚的该晶体,当输出镜透过率为1.5%时,获得斜率效率为20%,最高功率为1.75 W的1.5~1.6μm波段激光输出.输出激光波长随吸收抽运功率和输出镜透过率发生变化.当输出镜透过率为1.5%时,随着吸收抽运功率的增加,不仅起振的纵模带增加并且输出功率逐渐从1.60μm的纵模带中转移到1.55μm的纵模带中.而当吸收抽运功率为13.6 W时,随着输出镜透过率的增加,输出激光波长从1.60μm转移到1.52μm.结果表明Er3+和Yb3+双掺的GAB晶体是一种优秀的1.5~1.6μm波段激光材料. An Er^3+ :Yb^3+ :GdAl3 (BO3)4 (GAB) crystal with Yb^3+ and Er^3+ atoms fraction of 20% and 1.1% was grown by the flux method. End-pumped by a fiber-coupling quasi-continuous wave (CW) diode laser at 0.97 μm, 1.5-1.6 μm laser with output power up to 1.75 W and slope efficiency near to 20% was realized from a 0.7 mm thick Er^3+: Yb^3+ : GAB crystal in a hemispherical cavity with the output coupler transmission of 1.5%. The influences of the absorbed pump powers and output coupler transmissions on the laser spectra were also investigated. When the output coupler transmission was 1.5% and the absorbed pump power was increased, more longitudinal mode groups were observed and the main output laser power gradually shifts from the longitudinal mode group around 1.60 μm to around 1.55 μm. When the absorbed pump power was 13.6 W and output coupler transmission was increased, laser wavelength was shifted from 1.60 μm to 1.52 μm. The results show that the Er^3+ and Yb^3+ co-doped GAB crystal is an excellent gain medium for realizing 1.5- 1.6 μm laser.
出处 《中国激光》 EI CAS CSCD 北大核心 2008年第4期597-600,共4页 Chinese Journal of Lasers
基金 国家自然科学基金(60778015) ,福建省重大科技计划(2005HZ1024) 福建省自然科学基金(A0610031) 中国科学院知识创新工程青年人才领域前沿项目资助课题
关键词 材料 Er^3+:Yb^3+:GdAl3(BO3)4晶体 1.5~1.6μm波段固体激光 半导体激光抽运 materials Er^3+:Yb^3+:GdAl3 (BO3)4 crystal 1.5- 1.6 μm laser laser diode-pumped
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  • 1柳祝平,胡丽丽,戴世勋,姜中宏.Cr^(3+),Yb^(3+),Er^(3+)共掺磷酸盐铒玻璃中Ce^(3+)和Cr^(3+)离子对光谱性质的影响[J].中国激光,2004,31(9):1086-1090. 被引量:4
  • 2冯新焕,孙磊,刘艳格,熊凌云,袁树忠,开桂云,董孝义.基于保偏光纤光栅的双波长掺铒光纤激光器[J].中国激光,2005,32(2):145-148. 被引量:13
  • 3胡松,尉仕康,詹黎,宋跃江,夏宇兴.15波长输出的布里渊掺铒光纤激光器[J].光学学报,2005,25(2):212-215. 被引量:14
  • 4李尧,冯新焕,孙磊,孙婷婷,刘艳格,袁树忠,开桂云,董孝义.用偏振烧孔实现的室温双波长光纤激光器[J].光子学报,2005,34(2):173-175. 被引量:9
  • 5G. Karlsson, F. Laurell, J. Tellefsenet al.. Development and characterization of Yb-Er laser glass for high average power laser diode pumping [J]. Appl. Phys. B, 2002, 75(1):41-46
  • 6J. Andrew Hutchinson, Toomas T. Allik. Diode array-pumped Er, Yb:phosphate glass laser [J]. Appl. Phys. Lett, 1992,60(12) :1424-1426
  • 7L. O. Byshevskaya-Konopko, A. A. Izyneev, Yu. S. Pavlov et al.. On the role of cerium in a chromium-ytterbium-erbium phosphate glass [J]. Quantum Electron, 2000, 30(9) : 767-770
  • 8B. I. Galagan, Yu. K. Danileiko, B. I. Denker et al.. Nature of the temperature dependence of the lasing efficiency of erbium laser glasses and the mechanism of the influence of sensitizers on this efficiency [J]. Quantum Electron, 1998, 28(4): 313-315
  • 9N. E. Alekseev, L. O. Byshevskaya-Konopko, I. L. Vorob' ev et al.. Continuous wave lasing at 1. 54 μm in a flashlamppumped ytterbium-erbium-doped glass [ J ]. Quantum Electron, 2003, 33(12) : 1062 -1064
  • 10Shibin Jiang, Michael Myers, Nasser Peyghambarian. Er^3+ doped phosphate glasses and lasers [J]. J. Non-Cryst. Solids,1998, 239(1-3) :143-148

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  • 1臧竞存.钨酸盐闪烁单晶材料的现状和发展[J].材料导报,1995,9(6):35-38. 被引量:19
  • 2Y.Fujimoto, M. Nakatsuka. Infrared luminescence from bismuth-doped silica glass[J].Jpn.J.Appl. Phys., 2001, 40(3B): 279-281.
  • 3Meng Xiangeng,Peng Mingying, Chen Danping et al.. Broadband infrared luminescence of bismuth-doped borosilicate glasses[J].Chin. Phys. Lett., 2005, 22(3): 615-617.
  • 4Peng Mingying, Qiu Jianrong, Chen Danping et al.. Broadband infrared luminescence from Li2O-Al2O3-ZnO-SiO2 glasses doped with Bi2O3[J].Opt. Express, 2005, 13(18): 6892-6898.
  • 5Peng Mingying, Qiu Jianrong, Chen Danping et al.. Bismuth -and aluminum-co-doped germanium oxide glasses for super-broadband optical amplification[J].Opt. Lett., 2004, 29(17): 1998-2000.
  • 6Peng Mingying, Meng Xiangeng ,Qiu Jianrong et al.. GeO2Bi, M(M=Ga,B) glasses with super-wide infrared luminescence [J].Chem. Phys. Lett., 2005, 403: 410-414.
  • 7Peng Mingying, Wang Chen, Chen Danping et al.. Investigations on bismuth and aluminum co-doped germanium oxide glasses for ultra-broadband optical amplification[J].J. Non-Cryst.Solids., 2005, 351(30-32): 2388-2393.
  • 8Meng Xiangeng, Qiu Jianrong, Peng Mingying et al.. Infrared broadband emission of bismuth-doped barium-aluminum-borate glass[J].Opt. Express, 2005, 13(5): 1635-1642.
  • 9Andrey G. Okhrimchuk, Leonid N. Butvina, Evgueni M. Dianov et al.. Near-infrared luminescence of RbPb2Cl5Bi crystals[J].Opt.Lett., 2008, 33(19): 2182-2184.
  • 10Su Liangbi, Yu Jun, Zhou Peng et al.. Broadband near-infrared luminescence in γ-irradiated Bi-doped α-BaB2O4 single crystals[J].Opt Lett., 2009, 34(16): 2504-2506.

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