• Chinese Journal of Lasers
  • Vol. 37, Issue 9, 2289 (2010)
Liu Qiang*, Yan Xingpeng, Chen Hailong, Huang Lei, and Gong Mali
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/cjl20103709.2289 Cite this Article Set citation alerts
    Liu Qiang, Yan Xingpeng, Chen Hailong, Huang Lei, Gong Mali. New Progress in High-Power All-Solid-State Ultraviolet Laser[J]. Chinese Journal of Lasers, 2010, 37(9): 2289 Copy Citation Text show less
    References

    [1] T.Sasaki,Y.Mori,M.Yoshimura et al..Recent development of nonlinear optical borate crystals:key materials for generation of visible and UV light[J].Mater.Sci.Eng.Rep.,2000,30(1-2):1-54

    [2] C.X.Wang,G.Y.Wang,A.V.Hicks et al..High-power Q-switched TEM00 mode diode-pumped solid state lasers with>30 W output power at 355 nm[C].SPIE,2006,6100:610019

    [3] N.Hodgson,M.Li,A.Held et al..Diode-pumped TEM00 mode solid state lasers and their micromachining applications[C].SPIE,2003,4977:281-294

    [4] Zhang Fei,Duan Jun,Zeng Xiaoyan et al..Study on blind holes drilling on flexible circuit board using 355nm UV laser[J].Chinese J.Lasers,2009,36(12):3143-3148

    [5] P.A.Franken,A.E.Hill,C.W.Peters et al..Generation of optical harmonics[J].Phys.Rev.Lett.,1961,7(4):118-119

    [6] M.Bass,P.A.Franken,A.E.Hill et al..Optical mixing[J].Phys.Rev.Lett.,1962,8(1):18-18

    [7] J.A.Giordmaine.Mixing of light beams in crystals[J].Phys.Rev.Lett.,1962,8(1):19-20

    [8] P.D.Maker,R.W.Terhune,M.Nisenoff et al..Effects of dispersion and focusing on the production of optical harmonics[J].Phys.Rev.Lett.,1962,8(1):21-22

    [9] V.G.Dmitriev,G.Ggurzadyan,D.N.Nikogosyan.Handbook of Nonlinear Optical Crystals[M].New York:Springer,1999

    [10] Yao Jianquan,Nonlinear Optical Frequency Conversion and Laser Tuning Technique[M].Beijing:Science Press,1995

    [11] Shi Shunxiang,Chen Guofu,Zhao Wei et al..Nonlinear Optics[M].Xi′an:Xidian University Press,2003

    [12] Li Gang.The Conversion and Scaling for Lasers Frequency:The Practical Nonlinear Optics Technology[M].Beijing:Science Press,2005

    [13] C.Chen,Y.Wu,A.Jiang et al..New nonlinear-optical crystal:LiB3O5[J].J.Opt.Soc.Am.B.,1989,6(4):616-621

    [14] Y.Mori,I.Kuroda,S.Nakajima et al..New nonlinear optical crystal:cesium lithium borate[J].Appl.Phys.Lett.,1995,67(13):1818-1820

    [15] Y.Wu,T.Sasaki,S.Nakai et al..CsB3O5:a new nonlinear optical crystal[J].Appl.Phys.Lett.,1993,62(21):2614-2615

    [16] C.T.Chen,J.H.Lu,G.L.Wang et al..Deep ultraviolet harmonic generation with KBe2BO3F2 crystal[J].Chinese Phys.Lett.,2001,18(8):1081-1081

    [17] Z.G.Hu,M.Yoshimura,K.Muramatsu et al..A new nonlinear optical crystal-BaAlBO3F2(BABF)[J].Jpn.J.Appl.Phys.,2002,41(10B):L1131-L1133

    [18] C.Chen.Chinese lab grows new nonlinear optical borate crystals[J].Laser Focus World,1989,25(11):129-130

    [19] L.Wang,S.Chen,J.Xue et al..Optical properties of the second harmonic generation for nonlinear crystal CLBO[C].SPIE,2001,4453:106-111

    [20] D.A.Roberts.Simplified characterization of uniaxial and biaxial nonlinear optical crystals:A plea for standardization of nomenclature and conventions[J].IEEE.J.Quantum.Electron,1992,28(10):2057-2074

    [21] H.Kitano,K.Sato,N.Ushiyama et al..Efficient 355-nm generation in CsB3O5 crystal[J].Opt.Lett.,2003,28(4):263-265

    [22] Y.Zhou,Y.Yue,J.Wang et al..Nonlinear optical properties of BaAlBO3F2 crystal[J].Opt.Express,2009,17(22):20033-20038

    [23] Y.Zhou,G.Wang,Y.Yue et al..High-efficiency 355 nm generation in barium aluminum borate diflouride (BaAlBO3F2)[J].Opt.Lett.,2009,34(6):746-748

    [24] G.Ryu,C.S.Yoon,T.P.J.Han et al..Growth and characterisation of CsLiB6O10 (CLBO) crystals[J].J.Cryst.Growth,1998,191(3):492-500

    [25] C.Chen,Y.Wang,B.Wu et al..Design and synthesis of an ultraviolet-transparent nonlinear optical crystal Sr2Be2B2O7[J].Nature,1995,373(6512):322-324

    [26] G.Aka,A.Kahn-Harari,D.Vivien et al..A new non-linear and neodymium laser self-frequency doubling crystal with congruent melting:Ca4GdO(BO3)3 (GdCOB)[J].European Journal of Solid State and Inorganic Chemistry,1996,33(8):727-736

    [27] Z.Jie,C.Dafu,L.Huibin et al..Structural behavior of thin BaTiO3 film grown at different conditions by pulsed laser deposition[J].Jpn.J.Appl.Phys.,1997,36(1A):276-283

    [28] H.Zhang-Gui,T.Higashiyama,M.Yoshimura et al..A new nonlinear optical borate crystal K2Al2B2O7 (KAB)[J].Jpn.J.Appl.Phys.,1998,37(10A):1093-1094

    [29] N.Hodgson,D.Dudley,L.Gruber et al..Diode end-pumped,TEM00 Nd:YVO4 laser with output power greater than 12 W at 355 nm[C].Conference on Lasers and Electro-Optics (CLEO),Washington,2001,389-390

    [30] Y.C.Wu,F.Chang,P.Z.Fu et al..High-average-power third harmonic generation at 355 nm with CsB3O5 crystal[J].Chinese Phys.Lett.,2005,22(6):1426-1428

    [31] D.Rajesh,M.Yoshimura,T.Eiro et al..UV laser-induced damage tolerance measurements of CsB3O5 crystals and its application for UV light generation[J].Opt.Mater.,2008,31(2):461-463

    [32] Hu Ailan,Guo Qiang,Wu Bian et al..LD pumped 355-nm quasi-CW ultraviolet laser[J].Chinese J.Lasers,2009,36(7):1810-1814

    [33] D.R.Dudley,O.Mehl,G.Y.Wang et al..Q-switched diode pumped Nd:YAG rod laser with output power of 420 W at 532 nm and 160 W at 355 nm[C].SPIE,2009,7193:71930Z

    [34] T.Kojima,S.Konno,S.Fujikawa et al..20 W ultraviolet-beam generation by fourth-harmonic generation of an all-solid-state laser[J].Opt.Lett.,2000,25(1):58-60

    [35] T.Sasaki,Y.Mori,M.Yoshimura.Progress in the growth of a CsLiB6010 crystal and its application to ultraviolet light generation[J].Opt.Mater.,2003,23(1-2):343-351

    [36] M.Nishioka,S.Fukumoto,F.Kawamura et al..Improvement of laser-induced damage tolerance in CsLiB6O10 for high-power UV laser source[C].Conference on Lasers and Electro-Optics (CLEO),Baltimore,2003,CTuF2

    [37] T.Katsura,T.Kojima,M.Kurosawa et al..High-power,high-repetition UV beam generation with an all-solid-state laser[C].CLEO/Europe and IQEC 2007 Conference Digest,Munich,2007,CA5_3

    [38] G.Wang,A.Geng,Y.Bo et al..28.4 W 266 nm ultraviolet-beam generation by fourth-harmonic generation of an all-solid-state laser[J].Opt.Commun.,2006,259(2):820-822

    [39] X.Ya,Q.Liu,M.Gong et al..High-repetition-rate high-beam-quality 43 W ultraviolet laser with extra-cavity third harmonic generation[J].Appl.Phys.B:Lasers Opt.,2009,95(2):323-328

    [40] Q.Liu,X.Yan,X.Fu et al..183 W TEM00 mode acoustic-optic Q-switched MOPA laser at 850 kHz[J].Opt.Express,2009,17(7):5636-5644

    [41] Q.Liu,X.Yan,M.Gong et al..103 W high beam quality green laser with an extra-cavity second harmonic generation[J].Opt.Express,2008,16(19):14335-14340

    [42] X.Yan,Q.Liu,H.Chen et al..35.1 W all-solid-state 355 nm ultraviolet laser[J].Laser Phys.Lett.,2010,7(8):563-568

    [43] Q.Liu,X.P.Yan,X.Fu et al..High power all-solid-state fourth harmonic generation of 266 nm at the pulse repetition rate of 100 kHz[J].Laser Phys.Lett.,2009,6(3):203-206

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    Liu Qiang, Yan Xingpeng, Chen Hailong, Huang Lei, Gong Mali. New Progress in High-Power All-Solid-State Ultraviolet Laser[J]. Chinese Journal of Lasers, 2010, 37(9): 2289
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