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YAG陶瓷激光器的研究进展

刘亚东 姚志健

引用本文:
Citation:

YAG陶瓷激光器的研究进展

    作者简介: 刘亚东(1986- ),男,硕士研究生,主要从事固体激光器方而的研究上作。.
    通讯作者: 姚志健, frank0788@gmail.com
  • 中图分类号: TN248.1

Progress of YAG ceramic laser

    Corresponding author: YAO Zhi-jian, frank0788@gmail.com
  • CLC number: TN248.1

  • 摘要: 激光透明陶瓷具有良好的材料和光学特性,并且具有较大的制备优势,是有着较好前景的激光材料。与之相对应,陶瓷激光器近年来引起了人们的广泛关注。主要综述了国内外YAG陶瓷激光器的进展。陶瓷激光器的发展虽然只有短短十几年的时间,但是发展迅速;随着制备工艺的进一步发展,陶瓷激光器将可能有更好的发展前景。
  • "[1] IKESUE A,KINOSHITA T,KAMATA K,et al.Fabrication and optical proper ties of high performance poly crystalline Nd:YAG ceramics for solid state lasers[J].Journal of the American Ceramic Society,1995,78(4):1033-1040.
    [2]

    TAIRA T,KURIMURA S,SAIKAWA J,et al.Highly trivalent neodymium ion doped YAG ceramic for microchip lasers[C]//Advanced Solid-State Lasers.Boston:Massachusetts,USA:Optics InfoBase,1999:TUB.
    [3]

    LU J,PRABHU M,SONG J,et al.Optical properties and highly efficient laser oscillation of Nd:YAG ceramics[J].Applied Physics,2000,B71(4):469-473.
    [4]

    LU J,TAKAICKI K,UEMATSU T,et al.110W ceramic Nd3+:Y3Al5O12 laser[J].Applied Physics,2004,B79(1):25-28.
    [5]

    TRAINOR D W.Ceramic slab Nd:YAG laser emits 5kW[J].Laser Focus World,2005,41(10):16.
    [6]

    LAPUCCI A,CIOFINI M.Efficiency optimization for a diode-pumped Nd:YAG ceramic slab laser[J].Applied Optices,2005,44(20):4388-4393.
    [7]

    KRACHT D,FREIBRQ D,WILHELM R,et al.Core-doped ceramic Nd:YAG laser[J].Optical Express,2006,14(7):2690-2694.
    [8]

    HELLER A.Transparent ceramics spark laser advances[J].Science and Technology Review,2006(4):9-16.
    [9]

    YAGI H,YANAGITANI T,UED K.Nd3+:Y3Al5O12 laser ceramics:Flashlamp pumped laser operation with a UV cut filter[J].Journal of Alloys and Compounds,2006,421:195-199.
    [10]

    SAIKI T,MOTOKOSHI S,IMASAKI K,et al.Two-pass amplification of CW laser by Nd/Cr:YAG ceramic Active mirror under lamp light pumping[J].Optics Communications,2009,282(5):936-939.
    [11]

    TAKAICHI K,YAGI H,LU J,et al,Yb3+-doped Y3Al5O12 ceramics-a new solid-state laser material[J].Physica Stattus Solidi,2003,200(1):R5-R7.
    [12]

    TSUNEKANE M,TAIRA T.High-power operation of diode edge-pumped,composite all-ceramic Yb:Y3Al5O12 microchip laser[J].Applied Physics Letters,2007,90(12):121101.
    [13]

    KAWASHIMA T,IKEGAWA T,MIYAJIMA H,et al.302W diode-pumped cryogenic Yb:YAG ceramics zigzag slab laser with 60% conversion efficiency[C]//Optics InfoBase.Rochester Ny USA:Optical Society of America,2008:PDPA5.
    [14]

    FURUSE H,KAWANAKA J,MIYANAGA N,et al.Zig-zag active-mirror laser with cryogenic Yb3+:YAG/YAG composite ceramics[J].Optics Express,2011,19(3):2448-2455.
    [15]

    OSTBY E P,ACKERMAN R A,HUIE J C,et al.Ceramic Yb:YAG microchip laser[J].Proceedings of SPIE,2007,6346:63460V1.
    [16]

    PIRRI A,ALDERIGHI D,TOCI G,et al.High-efficiency,high-power and low threshold Yb3+:YAG ceramic laser[J].Journal of the Optical Society of America,2009,17(25):23344-23349.
    [17]

    LUO D W,ZHANG J,XU Ch W,et al.Fabrication and laser properties of transparent Yb:YAG ceramics[J].Optical Materials,2012,34(6):936-939.
    [18]

    HAZAMA H,YUMOTOB M,OGAWA T,et al.Mid-infrared tunable optical parametric oscillator pumped by a Q-switched Tm,Ho:YAG ceramic laser[J].Proceedings of SPIE,2009,7197:71970J1.
    [19]

    PAN Y B,XU J,WU Y S,et al.Fabrication and laser output of Nd:YAG transparent ceramic[J].Journal of Inorganic Materials,2006,21(5):1278-1280(in Chinese).
    [20]

    WU Y S,LI J,PAN Y B,et al.Diode-pumped Yb:YAG ceramic laser[J].Journal of the American Ceramic Society,2007,90(10):3334-3337.
    [21]

    ZHANG W X,PAN Y B,ZHOU J,et al.Diode-pumped Tm:YAG ceramic laser[J].Journal of the American Ceramic Society,2009,92(10):2434-2437.
    [22]

    QI Y F,LOU Q H,MA H X,et al.Highly efficient Nd:YAG ceramic CW laser with 598% slope-efficiency[J].Chinese Optics Letters,2005,3(2):89-91.
    [23]

    QI Y F,ZHU X L,LOU Q H,et al.Nd:YAG ceramic laser obtained high slope efficiency of 62% in high power applications[J].Journal of the Optical Society of America,2005,13(22):8725-8729.
    [24]

    CHENG X J,XU J Q,WANG M J,et al.Ho:YAG ceramic laser pumped by Tm:YLF lasers at room temperature[J].Laser Physics Letters,2010,7(5):351-354.
    [25]

    ZONG N,ZHANG X F,LI F Q,et al.76W continuous wave 1064nm domestic Nd:YAG transparent ceramic laser[J].Chinese Journal of Lasers,2009,36(7):1899-1899(in Chinese).
    [26]

    ZHOU B B,WEI Z Y,ZOU Y W,et al.High-efficiency diode-pumped femtosecond Yb:YAG ceramic laser[J].Optics Leeters,2010,35(30):288-290.
    [27]

    LI C Y,BO Y,WANG B S,et al.A kilowatt level diode-side-pumped QCW Nd:YAG ceramic laser[J].Optics Communications,2010,283(24):5145-5148.
    [28]

    WAGN Y,SHEN D Y,CHEN H,et al.Highly efficient Tm:YAG ceramic laser resonantly pumped at 1617nm[J].Optics Letters,2011,36(23):4485-4487.
    [29]

    CHEN H,SHEN D Y,ZHANG J,et al.In-band pumped highly efficient Ho:YAG ceramic laser with 21 W output power at 2097nm[J].Optics Letters,2011,36(9):1575-1577.
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    [6] 魏勇张戈黄呈辉黄凌雄位民 . 1318.8nm单一谱线Nd:YAG激光器. 激光技术, 2005, 29(3): 258-260.
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出版历程
  • 收稿日期:  2012-08-22
  • 录用日期:  2012-08-30
  • 刊出日期:  2013-05-25

YAG陶瓷激光器的研究进展

    通讯作者: 姚志健, frank0788@gmail.com
    作者简介: 刘亚东(1986- ),男,硕士研究生,主要从事固体激光器方而的研究上作。
  • 1. 北京理工大学光电学院, 北京100081;
  • 2. 中国兵器科学研究院, 北京100089

摘要: 激光透明陶瓷具有良好的材料和光学特性,并且具有较大的制备优势,是有着较好前景的激光材料。与之相对应,陶瓷激光器近年来引起了人们的广泛关注。主要综述了国内外YAG陶瓷激光器的进展。陶瓷激光器的发展虽然只有短短十几年的时间,但是发展迅速;随着制备工艺的进一步发展,陶瓷激光器将可能有更好的发展前景。

English Abstract

参考文献 (29)

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